Showing posts with label greenhouse. Show all posts
Showing posts with label greenhouse. Show all posts

Thursday, May 28, 2015

VISUALIZING: for Science and Technology

Computer Model Visualization of Crash-Dummy

Nowadays it is common to use computer models, such as the crash-dummy in the adjacent image, to help us VISUALIZE and better understand complex situations and systems. Prior to the advent of computer models, we had to use mental models in our "mind's eye", along with physical aids such as paper maps and diagrams, modelling clay, and other means.

LINKS TO RELATED POSTINGS AND RESOURCES
VISUALIZING Relativity - PowerPoint Show
VISUALIZING Relativity - Excel Spreadsheet
VISUALIZING for Science and Technology - Blog Posting
VISUALIZING Einstein's "Miracle Year" - Blog Posting
VISUALIZING My Insight Into Lorentz Gamma - Blog Posting
VISUALIZING the "Twin Paradox" - Blog Posting

Albert Einstein was a great physicist, with all the requisite mathematical tools. However, he rejected purely mathematical abstraction and resorted to physical analogy for his most basic insights. For example, as part of the thought process that resulted in his theories of Special Relativity (1905) and General Relativity (1915) he imagined himself riding along a beam of light; or as an observer standing along the tracks as a train zipped by at near-light-speed; or as a scientist sealed in a closed box and not able to tell if the box was stationary on the surface of the Earth, subject to gravity, or in deep space, far from massive objects, but subject to acceleration due to being dragged by a rocket at ever-increasing speeds.
VISUALIZING the Solution
Using Math and Graphics

Of course, Einstein and virtually all scientists and technologists use mathematical abstractions to quantify the meaning in our visualization models. We change the initial conditions and run these models to simulate what may or may not happen in different situations.

COMPUTER MODELS FOR VISUALIZATION

As personal computers and the Internet have become endemic, manual typewriters, paper maps, physical books, and so much else has been displaced by automated versions. Similarly, computer visualizations and models have displaced older methods - except for that old reliable "mind's eye" which remains as important as ever.

During my career as a Senior System Engineer at IBM and Lockheed-Martin I made extensive use of computer models and visualizations and have continued to do so since retirement.

In particular, I have created visualizations for the Atmospheric "Greenhouse" Effect and Einstein's Special and General Relativity. 

VISUALIZING THE ATMOSPHERIC "GREENHOUSE" EFFECT

As a Guest Contributor to the World's most popular Climate site, I authored a four-part series on Visualizing the Atmospheric "Greenhouse" Effect that attracted over 65,000 page views and over 2000 comments (see:  Physical Analogy,  Atmospheric Windows Emission Spectra, and Molecules and Photons,) The following graphics are some of the animated visualizations I created for that series.   


Physical Analogy

Model of a Physical Greenhouse
Model of the Atmospheric "Greenhouse"Effect

Modeled Down to Photons and Air Molecules































VISUALIZING EINSTEIN'S SPECIAL AND GENERAL RELATIVITY


Perhaps the most well-known equation in the world is E = mc2, recognized by virtually every person. But, what does it really mean?

And, many people know about the so-called "twin paradox", where one twin goes off on long mission at high speeds into space, and comes back younger. But why does this happen and exactly what causes it?

If "everything is relative" why isn't the stay-at-home twin also also younger? So, everything is not relative, and perhaps Einstein's original name for his theories "Invariance" is more apt -for the fact all observers, including those moving at different speeds, measure the same speed for light.

If the traveling twin is younger due to experiencing high speed and acceleration, then it is aging that has slowed down, not time, per se.

Furthermore, what, precisely, is TIME? And how is TIME united with SPACE to form SpaceTime?

When you Google any of this stuff you are quickly buried in equations and tensor mathematics that no one (even an engineer like me) can really understand!

Well, all this bothered me for most of my life until, back in 2012, I decided to answer Alan Alda's Flame Challenge "What is Time?" and produce a short video. In the research process for that project, I think I had a critical insight into TIME, SPACE, and RELATIVITY that may help you VISUALIZE this important scientific theory.

Time - the fourth dimension (2013 Flame Challenge) from Ira V Glickstein on Vimeo.

Since that time, I've continued to delve into Relativity and I've come up with what I think is a unique way to visualize and ... perhaps ... even understand it. The following images are screenshots from an Excel spreadsheet I created to provide myself (and you :^) a "hands-on" experience with the relativistic effects of high speed (kinetic energy) and high acceleration (potential energy), including time dilation, length contraction, and the curvature of SPACE and TIME. It is available free.


Free Excel Spreadsheet for VISUALIZATION of Einstein's Special and General Relativity. 

Image is of the Main Panel where user selects a Star, Planet, or Set Angle Option. In the case illustrated, the SpaceTime angle is set to 30º, where velocity is half the speed of light. This causes clocks to slow down by 13.4%, which corresponds to 49 days per year or 482 seconds per hour. Right side shows Special Relativity Effects due to the Kinetic Energy of moving at half the speed of light in empty Space. Left side shows equivalent General Relativity Effects, where Time "curves" due to the Potential Energy of being "at rest" close to a Black Hole.


Free Excel Spreadsheet for VISUALIZATION of Einstein's Special and General Relativity. 

Image is of the SpaceTime view of the right side of the Main Panel (where the vector sum of TRAVEL + AGING = 1) plus the Minkowski-Like SpaceTime view (where the simple sum of TRAVEL + AGING =1).  

Free Excel Spreadsheet for VISUALIZATION of Einstein's Special and General Relativity. 
Image is of the Minkowski-Like view (described above) compared to a Planck view, where both Space and Time are assumed to be discrete, and Each tiny cell is 1 Planck Time (tby 1 Planck Length (P).

THE MAP IS NOT THE TERRITORY!

As my principal PhD advisor, Howard Pattee, taught me, "The MAP is NOT the TERRITORY". That sage statement means that no model is exactly the same as the thing being modeled (else it would be the real thing.)

We make models because the real thing is too complex and difficult for us to visualize, or -like the Global Climate- is not readily available for us to experiment upon.


The MAP is NOT the TERRITORY !
Many a General (or football coach) has moved symbols around on a map of the field of battle, convincing himself and his staff of inevitable victory, only to find his opponent also had a model, perhaps a better one plus superior forces to carry it to victory. 

We generally model only the most important or critical parts of the situation or complex system we are trying to visualize. We consider the model to have been successful if the results match actuality to some level of fidelity, at least for those significant portions. If subsequent testing reveals that the model does not comport with reality, we must improve or discard it.

CONCLUSION

This is the first of what I believe will turn into a series detailing my VISUALIZATION of Einstein's Relativity. Please stay tuned!

Ira Glickstein

Thursday, January 9, 2014

Global Warming - REAL, but NOT a Big DEAL

[UPDATE: I reposted this at WUWT, the most viewed Climate website in the world, and have over 10,000 page views and 230 comments.]
We've reached a turning point where it is hard for any Global Warming Alarmist to claim (with a straight face) that the world as we know it is about to end in a decade or two or three unless we stop burning fossil fuels. Anyone deluded or foolish enough to make such a claim would be laughed at by many audiences.

GLOBAL WARMING IS REAL

Yes, the world has warmed 1°F to 1.5°F (0.6°C to 0.8°C) since 1880 when relatively good thermometers became available. Yes, part of that warming is due to human activities, mainly burning unprecedented quantities of fossil fuels that continue to drive an increase in carbon dioxide (CO2) levels. The Atmospheric "Greenhouse" Effect is a scientific fact!

BUT GLOBAL WARMING IS NOT A BIG DEAL

As the animated graphic clearly indicates, the theoretical climate models used by the Intergovernmental Panel on Climate Change (IPCC) are handcuffed to inordinately high estimates of climate sensitivity (how much temperatures are expected to rise given a doubling of CO2). Since the advent of good satellite-based global temperature data in 1979, observed temperatures have risen at a fraction of the IPCC predicted rate even as CO2 continues to rise. Relax, there is not and never has been any near-term "tipping point". The actual Earth Climate System is far less sensitive to CO2 than claimed the IPCC climate theory, as represented by their computer models. Global Warming since 1880 is mainly due to Natural Cycles and Processes not under human control. Yes, the same Natural Cycles and Processes that were responsible for the many Ice Age cycles that repeatedly occurred about every 100,000 years or so.

MY JANUARY 2014 PRESENTATION 

By a stroke of good fortune, last week I was scheduled to present "Visualizing the Atmospheric 'Greenhouse' Effect - Global warming is real, but how much is due to human activities and how big is the risk?" to the Philosophy Club in the Central Florida retirement community where I live. This is a great time for Global Warming Skeptics to put the Alarmists in their place.

Everyone in the highly interactive and supportive audience was aware of newspaper and TV reports of the drama of those ill-fated Global Warming "Research" activists whose Russian ship, the Academik Shokalskiy, got stuck in the summer ice of the Antarctic. (Fortunately, those people are safe, having been rescued by a helicopter from a Chinese icebreaker.) In addition to the Antarctic adventure gone wrong, in the week leading up to and following my talk, the media was overrun by stories of the "polar vortex" literally freezing large parts of the US and even causing Florida temperatures to drop below 30°F.

Of course, we realize that the cold wave is only anecdotal evidence and "weather is not climate". However, photos and videos of researchers stuck in the Antarctic summer ice as well as scenes of American life frozen in place for days on end, when combined with clear and irrefutable evidence of a slowdown in warming since 1979 and no statistically significant warming since 1996 (as depicted in the graphic above), has considerable emotional impact.

My animated PowerPoint Show, which should run on any Windows PC, is available for download here. (NOTE: I knew that many members of The Philosophy Club audience, while highly intelligent and informed, are not particularly scientifically astute. Therefore, I kept to the basics and  invited questions as I proceeded. Since most of them think in Fahrenheit, I was careful to give temperatures in that system. By contrast, my 2011 talk to the more scientifically astute members of our local Science and Technology Club Skeptic Strategy for Talking about Global Warming was more technical. Both presentations make use of animated PowerPoint charts and you are free to download and use them as you wish.)

My presentation is based on my five-part series for the most viewed climate website in the world, "Watts Up With That" (WUWT) where I am a Guest Contributor. The series is entitled "Visualizing the 'Greenhouse Effect'" - 1 - A Physical Analogy, 2 - Atmospheric Windows, 3 - Emission Spectra, 4 - Molecules and Photons, and 5 - Light and Heat.  The series, which ran in 2011, generated tens of thousands of page views at WUWT, along with thousands of comments.

I wrote the series because WUWT is a "skeptic" website and attracts some viewers who reject the basic physics of the Atmospheric "Greenhouse" Effect. (The owner of WUWT, Anthony Watts, like me, accepts the basic physics and the fact that some of the warming of the past century is indeed due to human activities, such as unprecedented burning of fossil fuels that have raised CO2 levels. However, we are skeptical about how much the Earth Surface has actually warmed, and how big a risk is posed by moderate increases in CO2 and temperature.)

HOW A REAL GREENHOUSE WORKS

I explained how a real physical Greenhouse works and how that is both similar and different from the Atmospheric "Greenhouse" Effect. The Greenhouse descriptions I learned in high school, as well as those available on the Internet, consider only the RADIATIVE effect. The glass roof of the Greenhouse allows visible light to pass through freely, heating the soil, plants, and air, but is opaque to the resultant infrared radiation, which is partly re-radiated back down into the Greenhouse, warming it further.  That part is true, but far from the whole story. The MAIN reason a Greenhouse stays warm is that it is airtight to restrict CONVECTION and it is insulated to restrict CONDUCTION. In fact, it is possible to construct a successful Greenhouse using a roof made from materials that allow both visible and infrared to pass freely, but is impossible to make a working Greenhouse that is not both airtight and insulated.

HOW THE ATMOSPHERIC "GREENHOUSE" EFFECT WORKS

All warm objects emit radiation at a wavelength dependent upon the temperature of the object. The Sun, at around 10,000 °F, emits "short-wavelength" infrared radiation, centered around 1/2 micron (one millionth of a meter). The soil, plants, and air in the Greenhouse, at around 60 to 100 °F, emit "long wavelength" radiation, centered around 10 microns (with most of the energy between 4 and 25 microns).   

The Atmospheric "Greenhouse" Effect works because:
  1. Short-wavelength radiation from the Sun passes freely through the gases that make up  the Atmosphere,
  2. About a third of this Sunlight is reflected back by white clouds, dust, and light-colored objects on the Surface, and that energy is lost to Space,
  3. The remaining two-thirds of  the Sunlight energy is absorbed by the Sea and Land Surface and causes it to warm,
  4. The warm Surface cools by emitting long-wavelength radiation at the Bottom of the Atmosphere, and this radiation passes towards the Top of the Atmosphere, where it is ultimately lost to Space,
  5. On the way to the Top of the Atmosphere, much of this radiation is absorbed by so-called "Greenhouse" gases (mostly water vapor and carbon dioxide) which causes the Atmosphere to warm,
  6. The warmed Atmosphere emits infrared radiation in all directions, some into Space where it is lost, and some back towards the Surface where it is once again absorbed and further warms the Surface.
  7. In addition to the RADIATIVE effects noted in points 1 through 6, the Surface is cooled by CONVECTION and CONDUCTION (thunderstorms, winds, rain, etc.)
THANK GOODNESS OR THE ATMOSPHERIC "GREENHOUSE" EFFECT

If not for the warming effect of "Greenhouse" gases, the Surface of the Earth would average about -1 °F, which would prevent life as we know it. This effect is responsible for about 60 degrees F of warming.

According to the Intergovernmental Panel on Climate Change (IPCC), the Earth Surface has warmed about 1.5 °F since good thermometer data became available around 1880. Some skeptics (including me) believe the actual warming is closer to 1 °F, and that government agencies have adjusted the thermometer record to exaggerate the warming by 30% or more.

However, it doesn't really matter whether the actual warming is 1 °F or 1.5 °F because we are arguing about only 0.5 °F, which is less than 1% of the warming due to the Atmospheric "Greenhouse" Effect.

HOW SENSITIVE IS THE CLIMATE TO HUMAN ACTIVITIES?

The IPCC claims that the majority of the warming since 1880 is due to human activities. It is true that we are burning unprecedented amounts of fossil fuel (coal, oil, gas), and that we are making land use changes that may reduce the albedo (reflectiveness) of the Surface. Most of the increase in Atmospheric CO2 (a 40% rise from about 270 to nearly 400 parts per million by volume) is due to human activities.

The IPCC claims that Climate Sensitivity (the average increase in Surface temperatures due to a doubling of CO2) is between 3 °F and 8 °F.  Some skeptics (including me) believe they are off by at least a factor of two, and possibly a factor of three, and that Climate Sensitivity is closer to 1 °F to 3 °F.

As evidence for our conclusions, we point to the fact that virtually ALL of the IPCC climate models have consistently over-estimated future temperature predictions as compared to the actual temperature record. Indeed, for the past 17 years as CO2 levels continue their rapid climb, temperatures have leveled off, which is proof that Natural Cycles, not under human control or influence, have cancelled out warming due to CO2 increases. Thus, Natural Cycles must have a larger effect than CO2.

VISUALIZING THE ATMOSPHERIC "GREENHOUSE" EFFECT

As I noted above, I wrote the "Visualizing" series for WUWT (1 - A Physical Analogy, 2 - Atmospheric Windows, 3 - Emission Spectra, 4 - Molecules and Photons, and 5 - Light and Heat) because some WUWT viewers are "Disbelievers" who have had an "equal and opposite" reaction to the "end of the world" excesses of the Global Warming "Alarmists".  By failing to understand and accept the basic science of the Atmospheric "Greenhouse" Effect, they have, IMHO, "thrown the baby out with the bathwater".

1 - A Physical Analogy

Albert Einstein was a great theoretical physicist, with all the requisite mathematical tools. However, he rejected purely mathematical abstraction and resorted to physical analogy for his most basic insights. For example, he imagined a man in a closed elevator being transported to space far from any external mass and then subjected to accelerating speeds. That man could not tell the difference between gravity on Earth and acceleration in space, thus, concluded Einstein, gravity and acceleration are equivalent, which is the cornerstone of his theory of relativity. Einstein never fully bought into the mainstream interpretation of quantum mechanics that he and others have called quantum weirdness and spooky action at a distance. He had trouble accepting a theory that did not comport with anything he considered a reasonable physical analogy!

So, if you have trouble accepting the atmospheric “greenhouse” effect because of the lack of a good physical analogy, you are in fine company.

Well, getting back to the Atmospheric "Greenhouse Effect, a "disbelieving" commenter on WUWT, suggested we think of the Sunlight as truckloads of energy going from the Sun to the Earth Surface, and the infrared radiation from the Surface as equal truckloads going the other way. How, he asked, could these equal and opposite truckloads do anything but cancel each other out as far as the amount of energy on the Surface of the Earth? In reply, I posted a comment with an analogy of truckloads of orange juice, representing short-wave radiation from Sun to Earth, and truckloads of blueberry juice, representing longwave radiation between Earth and the Atmosphere and back out to Space.

That thought experiment triggered my creativity. I imagined the Sun as a ball-pitching machine, throwing Yellow balls towards the "Earth" Surface (representing short-wave radiation) and Purple balls (representing long-wave radiation) bouncing back towards Space and interacting with the Atmosphere. The graphic below is one of my depictions of the physical analogy. Follow this link for more graphics and detail.


I imagined the Earth as a well-damped scale. The Yellow balls would bounce off the Surface and turn into Purple balls (representing long-wave radiation as the Earth absorbed the short-wave radiation and then emitted an equal quantity of long-wave radiation). The scale would read "1" unit.

If there was no Atmosphere, or if the Atmosphere contained no "Greenhouse" gases to obstruct the flight of the Purple balls, they would fly out towards Space.

I then imagined the Atmosphere as an obstacle that absorbed the Purple balls, split them in two, and emitted half of the smaller balls to Space and the other half back towards the Earth. The balls going towards Earth would be absorbed, further heating the Earth, and the warmed Earth would emit them back towards the Atmosphere. The process would be repeated with the balls being absorbed by "Greenhouse" gases in the Atmosphere, and then emitted with half going out to Space, and half back to the Earth. The sum of 1 + 1/2 + 1/4 + 1/8 +1/16 ... = 2 (approximately), so the scale reads "2" units.

Thus, in my simplified analogy, the "Greenhouse" gases in the "Atmosphere" cause the scale reading to double. So, the Atmospheric "Greenhouse" Effect causes the Earth Surface to be warmer than it would be absent the "Greenhouse" gases. I think Einstein would be pleased!  Read more detail at WUWT, including the 340 responses (comments received and my brilliant replies!)...,

2 - Atmospheric Windows

A real greenhouse has windows. So does the Atmospheric “greenhouse effect”. They are similar in that they allow Sunlight in and restrict the outward flow of thermal energy. However, they differ in the mechanism. A real greenhouse primarily restricts heat escape by preventing convection while the “greenhouse effect” heats the Earth because “greenhouse gases” (GHG) absorb outgoing radiative energy and re-emit some of it back towards Earth.
There are two main “windows” in the Atmospheric “greenhouse effect”. The first, the Visible Light Window, on the left side of the graphic, allows visible and near-visible light from the Sun to pass through with small losses, and the second, the Longwave Window, on the right, allows the central portion of the longwave radiation band from the Earth to pass through with small losses, while absorbing and re-emitting the left and right portions.
Sunlight Energy In = Thermal Energy Out
The graphic is an animated depiction of the Atmospheric “greenhouse effect” process.

On the left side:
(1) Sunlight streams through the Atmosphere towards the surface of the Earth.
(2) A portion of the Sunlight is reflected by clouds and other high-albedo surfaces and heads back through the Atmosphere towards Space. The remainder is absorbed by the Surface of the Earth, warming it.
(3) The reflected portion is lost to Space.
On the right side:
(1) The warmed Earth emits longwave radiation towards the Atmosphere. According to the first graphic, above, this consists of thermal energy in all bands ~7μ, ~10μ, and ~15μ.
(2) The ~10μ portion passes through the Atmosphere with litttle loss. The ~7μ portion gets absorbed, primarily by H2O, and the 15μ portion gets absorbed, primarily by CO2 and H2O. The absorbed radiation heats the H2O and CO2 molecules and, at their higher energy states, they collide with the other molecules that make up the air, mostly nitrogen (N2), oxygen (O2), ozone (O3), and argon (A) and heat them by something like conduction. The molecules in the heated air emit radiation in random directions at all bands (~7μ, ~10μ, and ~15μ). The ~10μ photons pass, nearly unimpeded, in whatever direction they happen to be emitted, some going towards Space and some towards Earth. The ~7μ and ~15μ photons go off in all directions until they run into an H2O or CO2 molecule, and repeat the absorption and re-emittance process, or until they emerge from the Atmosphere or hit the surface of the Earth.
(3) The ~10μ photons that got a free-pass from the Earth through the Atmosphere emerge and their energy is lost to Space. The ~10μ photons generated by the heating of the air emerge from the top of the Atmosphere and their energy is lost to Space, or they impact the surface of the Earth and are re-absorbed. The ~7μ and ~15μ generated by the heating of the air also emerge from the top or bottom of the Atmosphere, but there are fewer of them because they keep getting absorbed and re-emitted, each time with some transfered to the central ~10μ portion of the longwave band.
 the infrared (long-wavelength). Read more detail at WUWT, including the 489 responses (comments received and my brilliant replies!)...

3 - Emission Spectra

The Atmospheric “greenhouse effect” has been analogized to a blanket that insulates the Sun-warmed Earth and slows the rate of heat transmission, thus increasing mean temperatures above what they would be absent “greenhouse gases” (GHGs). Perhaps a better analogy would be an electric blanket that, in addition to its insulating properties, also emits thermal radiation both down and up. The graphic below, based upon actual measurements of long-wave radiation as measured by a satellite LOOKING DOWN from the Top of the Atmosphere as well as from the Surface LOOKING UP from the Bottom of the Atmmsphere, depicts the situation.
,
Description of graphic (from bottom to top):
Earth Surface: Warmed by shortwave (~1/2μ) radiation from the Sun, the surface emits upward radiation in the ~7μ, ~10μ, and ~15μ regions of the longwave band. This radiation approximates a smooth “blackbody” curve that peaks at the wavelength corresponding to the surface temperature.
Bottom of the Atmosphere: On its way out to Space, the radiation encounters the Atmosphere, in particular the GHGs, which absorb and re-emit radiation in the ~7μ and ~15μ regions in all directions. Most of the ~10μ radiation is allowed to pass through.
The lower violet/purple curve (adapted from figure 8.1 in Petty and based on measurements from the Tropical Pacific looking UP) indicates how the bottom of the Atmosphere re-emits selected portions back down towards the surface of the Earth. The dashed line represents a “blackbody” curve characteristic of 300ºK (equivalent to 27ºC or 80ºF). Note how the ~7μ and ~15μ regions approximate that curve, while much of the ~10μ region is not re-emitted downward.
“Greenhouse Gases”: The reason for the shape of the downwelling radiation curve is clear when we look at the absorption spectra for the most important GHGs: H2O, H2O, H2O, … H2O, and CO2. (I’ve included multiple H2O’s because water vapor, particularly in the tropical latitudes, is many times more prevalent than carbon dioxide.)
Note that H2O absorbs at up to 100% in the ~7μ region. H2O also absorbs strongly in the ~15μ region, particularly above 20μ, where it reaches 100%. CO2 absorbs at up to 100% in the ~15μ region.
Neither H2O nor CO2 absorb strongly in the ~10μ region.
Since gases tend to re-emit most strongly at the same wavelength region where they absorb, the ~7μ and ~15μ are well-represented, while the ~10μ region is weaker.
Top of the Atmosphere: The upper violet/purple curve (adapted from figure 6.6 in Petty and based on satellite measurements from the Tropical Pacific looking DOWN) indicates how the top of the Atmosphere passes certain portions of radiation from the surface of the Earth out to Space and re-emits selected portions up towards Space. The dashed line represents a “blackbody” curve characteristic of 300ºK. Note that much of the ~10μ region approximates a 295ºK curve while the ~7μ region approximates a cooler 260ºK curve. The ~15μ region is more complicated. Part of it, from about 17μ and up approximates a 260ºK or 270ºK curve, but the region from about 14μ to 17μ has had quite a big bite taken out of it. Note how this bite corresponds roughly with the CO2 absorption spectrum.
See more graphics and detail at WUWT, including the 476 responses (comments received and my brilliant replies!)...

4 - Molecules and Photons

In this part, we consider the interaction between air molecules, including Nitrogen (N2), Oxygen (O2), Water Vapor (H2O) and Carbon Dioxide (CO2), with Photons of various wavelengths. This may help us visualize how energy, in the form of Photons radiated by the Sun and the Surface of the Earth, is absorbed and re-emited by Atmospheric molecules.

The animated graphic has eight frames, as indicated by the counter in the lower right corner. Molecules are symbolized by letter pairs or triplets and Photons by ovals and arrows. The view is of a small portion of the cloud-free Atmosphere.
  1. During the daytime, Solar energy enters the Atmosphere in the form of Photons at wavelengths from about 0.1μ (micron – millionth of a meter) to 4μ, which is called “shortwave” radiation and is represented as ~1/2μ and symbolized as orange ovals. Most of this energy gets a free pass through the cloud-free Atmosphere. It continues down to the Surface of the Earth where some is reflected back by light areas (not shown in the animation) and where most is absorbed and warms the Surface.
  2. Since Earth’s temperature is well above absolute zero, both day and night, the Surface radiates Photons in all directions with the energy distributed approximately according to a “blackbody” at a given temperature. This energy is in the form of Photons at wavelengths from about 4μ to 50μ, which is called “longwave” radiation and is represented as ~7μ, ~10μ, and ~15μ and symbolized as violet, light blue, and purple ovals, respectively. The primary “greenhouse” gases (GHG) are Water Vapor (H2O) and Carbon Dioxide (CO2). The ~7μ Photon is absorbed by an H2O molecule because Water Vapor has an absorption peak in that region, the ~10μ Photon gets a free pass because neither H2O nor CO2 absorb strongly in that region, and one of the 15μ Photons gets absorbed by an H2O molecule while the other gets absorbed by a CO2 molecule because these gases have absorption peaks in that region.
  3. The absorbed Photons raise the energy level of their respective molecules (symbolized by red outlines).
  4. The energized molecules re-emit the Photons in random directions, some upwards, some downwards, and some sideways. Some of the re-emitted Photons make their way out to Space and their energy is lost there, others back down to the Surface where their energy is absorbed, further heating the Earth, and others travel through the Atmosphere for a random distance until they encounter another GHG molecule.
  5. This frame and the next two illustrate another way Photons are emitted, namely due to collisions between energized GHG molecules and other air molecules. As in frame (2) the Surface radiates Photons in all directions and various wavelengths.
  6. The Photons cause the GHG molecules to become energized and they speed up and collide with other gas molecules, energizing them. NOTE: In a gas, the molecules are in constant motion, moving in random directions at different speeds, colliding and bouncing off one another, etc. Indeed the “temperature” of a gas is something like the average speed of the molecules. In this animation, the gas molecules are fixed in position because it would be too confusing if they were all shown moving and because the speed of the Photons is so much greater than the speed of the molecules that they hardly move in the time indicated.
  7. The energized air molecules emit radiation at various wavelengths and in random directions, some upwards, some downwards, and some sideways. Some of the re-emitted Photons make their way out to Space and their energy is lost there, others back down to the Surface where their energy is absorbed, further heating the Earth, and others travel through the Atmosphere for a random distance until they encounter another GHG molecule.
  8. Having emitted the energy, the molecules cool down.
Read more detail at WUWT, including the 743 responses (comments received and my brilliant replies!)...

5 - Light and Heat

Solar “light” radiation in = Earth “heat” radiation to Space out! That’s old news to those of us who understand all energy is fungible (may be converted to different forms of energy) and energy/mass is conserved (cannot be created nor destroyed).
My Visualizing series [Physical Analogy, Atmospheric Windows, Emission Spectra, and Molecules/Photons] has garnered almost 2000 comments, mostly positive. I’ve learned a lot from WUWT readers who know more than I do. However, some commenters seem to have been taken in by scientific-sounding objections to the basic science behind the Atmospheric “Greenhouse Effect”. Their objections seemed to add more heat than light to the discussion. This posting is designed to get back to basics and perhaps transform our heated arguments into more enlightened understanding :^)

Solar "light" energy in is equal to Earth "heat" energy out.
Read more detail at WUWT, including the 958 responses (comments received and my brilliant replies!)...

ANSWERING THREE OBJECTIONS TO BASIC ATMOSPHERIC “GREENHOUSE EFFECT” SCIENCE

First of all, let me be clear where I am coming from. I’m a Lukewarmer-Skeptic who accepts that H2O, CO2 and other so-called “greenhouse gases” in the Atmosphere do cause the mean temperature of the Earth Surface and Atmosphere to be higher than they would be if everything was the same (Solar radiation, Earth System Albedo, …) but the Atmosphere was pure nitrogen.

The main scientific question for me, is how much does the increase in human-caused CO2 and human-caused albedo reduction increase the mean temperature above what it would be with natural cycles and processes? My answer is “not much”, because perhaps 0.1ºC to 0.2ºC of the supposed 0.8ºC increase since 1880 is due to human activities. The rest is due to natural cycles and processes over which we humans have no control. The main public policy question for me, is how much should we (society) do about it? Again, my answer is “not much”, because the effect is small and a limited increase in temperatures and CO2 may turn out to have a net benefit.

So, my motivation for this Visualizing series is not to add to the Alarmist “the sky is falling” panic, but rather to help my fellow Skeptics avoid the natural temptation to fall into an “equal and opposite” falsehood, which some of those on my side, who I call “Disbelievers”, do when they fail to acknowledge the basic facts of the role of H2O and CO2 and other gases in helping to keep temperatures in a livable range.

Objection #1: Visual and near-visual radiation is merely “light” which lacks the “quality” or “oomph” to impart warmth to objects upon which it happens to fall.

Answer #1: A NASA webpage targeted at children is sometimes cited because they say the near-IR beam from a TV remote control is not warm to the touch. Of course, that is not because it is near-visual radiation, but rather because it is very low power. All energy is fungible, and can be changed from one form to another. Thus, the 240 Watts/m^2 of visible and near-visible Solar energy that reaches and is absorbed by the Earth System, has the effect of warming the Earth System exactly as much as an equal number of Watts/m^2 of “thermal” mid- and far-IR radiation.

Objection #2: The Atmosphere, which is cooler than the Earth Surface, cannot warm the Earth Surface.

Answer #2: The Second law of Thermodynamics is often cited as the source of this falsehood. The correct interpretation is that the Second Law refers to net warming, which can only pass from the warmer to the cooler object. The back-radiation from the Atmosphere to the Earth Surface has been measured (see lower panel in the above illustration). All matter above absolute zero emits radiation and, once emitted, that radiation does not know if it is travelling from a warmer to a cooler surface or vice-versa. Once it arrives it will either be reflected or absorbed, according to its wavelength and the characteristics of the material it happens to impact.

Objection #3: The Atmospheric “Greenhouse Effect” is fictional. A glass greenhouse works mainly by preventing or reducing convection and the Atmosphere does not work that way at all.

Answer #3: I always try to put “scare quotes” around the word “greenhouse” unless referring to the glass variety because the term is misleading. Yes, a glass greenhouse works by restricting convection, and the fact that glass passes shortwave radiation and not longwave makes only a minor contribution.

Thus, I agree it is unfortunate that the established term for the Atmospheric warming effect is a bit of a misnomer. However, we are stuck with it. But, enough of semantics. Notice that the Earth System mean temperature I had to use to provide 240 Watts/m^2 of radiation to Space to balance the input absorbed from by the Earth System from the Sun was 255 K. However, the actual mean temperature at the Surface is closer to 288 K. How to explain the extra 33 K (33ºC or 58ºF)? The only rational explanation is the back-radiation from the Atmosphere to the Surface.

Ira Glickstein

Friday, February 26, 2010

Atmospheric Science Made Simple

Here's a neat way to understand the issue of CO2 "saturation" in the atmosphere as well as the general mechanism of the "Greenhouse effect" and whether or not water vapor has a positive or negative feedback when it comes to Global Warming. You can download the PowerPoint Show with the atmospheric science part of my presentation to the Philo Club at The Villages, FL, along with an audio narrative, here. That show with a script is here. You can also download the PowerPoint Show with my complete talk contrasting Cap&Trade with a Revenue-Neutral Carbon Tax here.

The above chart shows the absorption spectrum for CO2, assuming levels from 100 ppmv (lowest level of CO2 in the ice core record) to 200 ppmv to pre-industrial levels of about 300 ppmv to current levels of around 400 ppmv and projecting up to 500 ppmv which is where we will be in around 50 years unless we curb our carbon emissions or the Earth cools a bit.

The "hot pink" area around 10μ is where the Earth's long wave infrared radiation peaks. Notice that going from 100 ppmv to 200 ppmv almost doubles the amount of absorptivity, and increasing CO2 to 300 ppmv almost triples it. However, at 300 ppmv, the 15μ band is 100% absorbed, so increasing to 400 ppmv has little additional effect as does further increase to 500 ppmv. I have never seen "CO2 saturation" presented this way. [Get an animated version with audio narration here.]

The above chart shows how the "Greenhouse Effect" works. Rays from the Sun that strike light-colored surfaces reflect the energy back to space. Rays that strike dark-colored surfaces are absorbed, warming the Earth. Warm surfaces emit all wavelengths in all directions. Some rays pass through the atmosphere back to space. Others are absorbed by CO2 gasses that re-radiate in all directions. Radiation that comes back and warms the Earth is called the “Greenhouse Effect”. [Get an animated version with audio narration here.]

The effect of water vapor in the atmosphere is controversial. IPCC models assume it has a positive feedback effect, meaning the more water vapor in the atmosphere, the more warming. Others, including me, believe the net effect of water vapor is negative, moderating warming.

The above chart tells why. All clouds do warm the earth according to the "Greenhouse Effect". In fact, for night clouds, that is the only effect. However, there are fewer night clouds and the Earth is cooler at night, so the warming effect is moderated. Daylight clouds also warm the Earth a bit by the "Greenhouse Effect", but they also reflect incomming Sunlight back to space and cast a cooling umbra on the Earth. The net effect of daylight clouds is therefore cooling. Rain, snow, thunderstorms, wind, convection and so on also have a net cooling effect. AAs we all know, clouds are formed when water evaporates from the surface of the warm Earth. The "heat of vaporization" removes heat from the Earth and the warmed water vapor takes it higher up in the atmosphere. When water vapor condenses to droplets, the "heat of condensation" (equal to the "heat of vaporization") releases the heat into the clouds where some escapes by radiation to space, a net cooling effect. Some radiation comes back to Earth as "Greenhouse Effect". Thunderstorms suck warmed air from the surface to high up in the atmosphere, returning cooler air, a net cooling effect. Rain or snow cools the Earth when it falls to the surface.

Therefore, it is reasonable to believe that water vapor, the key element along with the Sun in driving weather, has a generally net cooling effect. Thus, the fact that more water is evaporated as the Earth warms, has a negative feedback, and moderates Global Warming. [Get an animated version with audio narration here.]

Ira Glickstein

Wednesday, July 22, 2009

Global Warming Tiger - Ocean Carbon

This is the fourth of the series Global Warming - Tale of the Tiger.

Read the first posting in this series: Tale and a description of the figure to the left. I believe the apparent 0.8ºC increase in Global Temperature over the past 150 years is due to three major causes and one minor one, as indicated by the parts of the "tiger". (The second posting details Data Bias and the third Natural Cycles.)

OCEAN CARBON

This posting is about OCEAN CARBON that I estimate is responsible for about 20% of the apparent warming of the surface of the Earth over the past 150 years.

COMPONENTS OF ATMOSPHERIC CARBON GASSES

Atmospheric carbon gasses may be subdivided into three categories: 1) Historically normal levels, typical for the past 100,000 years or so, 2) excess carbon gasses over historically normal levels due to non-human causes, mainly the general warming of the surface of the Earth over the past 150 years, and 3) excess carbon gasses due to human activities, primarily the burning of previously sequestered carbon (coal, oil, natural gas). Although there are many carbon gasses, the following analysis centers on CO2, which is the main one.

1) What are the historically normal levels? Homo sapiens, hominids with large brains about the size of ours, have been on Earth for about 100,000 years. Humans capable of understanding and speaking metaphoric languages have been around for about 10,000 years. Industrial humans capable of having a substantial effect on atmospheric carbon have been around for only about 200 years. During the period from 100,000 to 200 years ago, according to ice core data, atmospheric CO2 gas has varied from about 180 to 280 parts per million (ppm). Thus, anything over 280 ppm is historically excessive.

2) What are the non-human-caused excess carbon levels? Current CO2 levels are about 390 ppm, which is 110 ppm in excess of the historical maximum. Of that, I believe around 70 to 80 ppm is due to the transfer of carbon from the surface of the Earth to the atmosphere, as a result of the actual global warming of about 0.5ºC over the past 150 years. I call this "ocean carbon" because most of it has fizzed out of the oceans over the past century and a half. The posting you are currently reading has to do with "ocean carbon".

3) What are the human-caused excess carbon levels? The remaining 30-40 ppm of excess CO2 in the atmosphere is due to human burning of previously sequestered carbon. The next posting in this series will detail what I call "human carbon".

THE "GREENHOUSE" EFFECT

When we were kids, we learned about the "greenhouse" effect. Visible light from the sun passes through the glass roof of the greenhouse. As this light energy floods in and illuminates the plants, soil and rocks, they heat up and emit infrared radiation. Since the infrared radiation is of a longer wavelength, it cannot pass back out through the glass, which is why (we were taught) the greenhouse heats up. Well, what we learned was true, but it turns out that the sun's heat stays within the greenhouse mostly because the side walls prevent the hot air from escaping. Nowadays you can build a good greenhouse with plastic materials that pass both visible and infrared radiation. As long as you make the building airtight it will work. On the other hand, a glass-roofed greenhouse that is not airtight will not work well.

WARMING DUE TO "GREENHOUSE GASSES"

CO2 in the atmosphere acts something like the glass roof of a greenhouse. Visible light passes through it fairly freely, but infrared radiation does not. Thus, as the level of CO2 in the atmosphere has increased from the historical maximum of about 280 ppm to the current level of about 390 ppm, more infrared radiation has been trapped in the atmosphere and the Earth has warmed considerably as a result.

I believe global warming is responsible for an actual increase of about 0.5ºC. Of that amount, about 0.1ºC to 0.2ºC is due to positive feedback from carbon gasses in the atmosphere that are in excess of historical levels and not due to human activities. This increase, which is about 20% of the apparent increase of 0.8ºC, is not under human control.

The fact that rising CO2 triggers positive feedback has led some to worry we may come to a "tipping point" where the CO2 increase triggers a temperature increase that triggers further CO2 increases and it all goes out of control. No need to worry. There is evidence that the current levels of CO2 are blocking nearly all the infrared radiation, so additional CO2 has little effect. Even doubling current levels will not cause a large increase in global warming. Beyond a certain point, if you double or triple the thickness of glass in the roof of a greenhouse, it will have little positive effect. (Consider a sun-blocking curtain on a window. If one curtain blocks, say, 90% of the sunlight, adding a second curtain will only block an additional 9%, and a third curtain less than 1% - the "Law of Dimimishing Returns".)

WHY DOES CO2 COME OUT OF THE OCEANS AS THEY WARM?

You are all familiar with the way a cold can of soda warms up and loses its "fizz" when left open on a hot day. The CO2 comes out of solution and goes into the atmosphere. That CO2 got absorbed into the soda at the factory when the cold liquid was exposed to concentrations of CO2 at high pressures.

The rate and direction of transfer of CO2 between the atmosphere and the oceans depends on many factors, mainly the concentration of CO2 in the air and water and the temperatures of the air and water. At current levels of CO2, the cold polar waters are net absorbers of CO2 from the atmosphere and the warm equatorial waters are net emitters of CO2 into the atmosphere. The temperate waters in-between either absorb or emit CO2 according to daily and seasonal temperatures.

As the Earth has warmed over the past 150 years, the colder waters have warmed a bit and therefore currently absorb a bit less carbon gasses than they did in the past. At the same time, the equatorial waters have also warmed and therefore emit a bit more carbon than in the past. The temporal waters also warmed and they absorb a bit less and emit a bit more. The result has been a net increase in atmospheric carbon of about 70-80 ppm over the past 150 years.

WHY ARE NORMAL LEVELS OF CO2 ESSENTIAL FOR LIFE ON EARTH?

Absent normal levels of CO2 in the atmosphere, the Earth would be a very cold place, unable to support life. Atmospheric CO2 is necessary for the growth of plants which obtain most of their mass from absorbtion of atmospheric carbon, creating carbohydrates and releasing oxygen into the atmosphere. Animals breathe the oxygenated air and feed on plants and digest the carbohydrates, releasing carbon dioxide and methane back into the atmosphere, where it is ingested again by the plants and so on in the carbon cycle of life.

Modest increases in atmospheric CO2 are beneficial to most plants as are moderate increases in temperature. There is NO short-term problem. However, as a conservative, I have a bias against relatively rapid change into unknown or unproven scenarios. Quite apart from global warming, I am sufficiently concerned about rapidly rising CO2 levels that I favor reasonable, concerted worldwide action, see Carbon Tax YES!, Cap and Trade NO!

CONCLUSIONS

Global warming, mostly due to natural cycles, has raised the temperature of the Earth causing the surface (mainly the oceans) to become a net emitters of CO2, responsible for about 70 - 80 ppm of the excesss atmospheric CO2 over historical levels. This naturally-caused temperature increase and resultant CO2 increase has increased the "greenhouse effect" and is responsible for about 20% of the apparent global warming we have experienced over the past 150 years. However, we are not near any "tipping point" as some of the alarmists claim.


Ira Glickstein