Last edited by Karr
Friday, May 8, 2020 | History

1 edition of Science Plan for the Atmospheric Radiation Measurement Program (ARM), DOE/ER-0670T, U.S. Department of Energy, February 1996. found in the catalog.

Science Plan for the Atmospheric Radiation Measurement Program (ARM), DOE/ER-0670T, U.S. Department of Energy, February 1996.

Science Plan for the Atmospheric Radiation Measurement Program (ARM), DOE/ER-0670T, U.S. Department of Energy, February 1996.

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Published .
Written in English


Edition Notes

ContributionsUnited States. Dept. of Energy.
ID Numbers
Open LibraryOL15512434M

Teen Science Cafe Atmospheric Radiation and Remote Sensing Research focuses on understanding the interactions between solar and terrestrial radiation and the atmosphere, including clouds, water vapor, aerosols and precipitation.   Part Four – the effect of changing lapse rates (atmospheric temperature profile) and of overlapping the pH2O and pCO2 bands. Why surface radiation is not a mirror image of top of atmosphere radiation. Part Five – a bit of a wrap up so far as well as an explanation of how the stratospheric temperature profile can affect “saturation”.

Home > Cloud radiative forcing at the Atmospheric Radiation Measurement Program Disclaimer: This material is being kept online for historical purposes. Though accurate at the time of publication, it is no longer being updated. Cloud-radiation interactions and feedbacks constitute the main focus of the Atmospheric Radiation Measurement (ARM) program, supported by the Department of Energy (Stokes and Schwartz, ). The indirect radiative effect (i.e., that associated with contrails and with influences of.

This Second Edition of An Introduction to Atmospheric Radiation has been extensively revised to address the fundamental study and quantitative measurement of the interactions of solar and terrestrial radiation with molecules, aerosols, and cloud particles in planetary atmospheres. It contains 70% new material, much of it stemming from the investigation of the atmospheric greenhouse effects of 4/5(1).   The best approach is to use Global Radiation (GLR) as a proxy for PAR since GLR is a standard daily measurement in meteorology and hence much more available globally.


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Science Plan for the Atmospheric Radiation Measurement Program (ARM), DOE/ER-0670T, U.S. Department of Energy, February 1996 Download PDF EPUB FB2

The world’s premier ground-based observations facility advancing atmospheric and climate research. For the Arctic, an Epic Investigation. ARM has an important role in the Multidisciplinary Drifting Observatory for the Study of Arctic Climate (MOSAiC) expedition, which goes through October Deciphering Cold-Air Outbreaks.

Science plan for the atmospheric radiation measurement program (ARM). Washington, D.C.: U.S. Dept. of Energy, Office of Energy Research, Office of Health and Environmental Research, Environmental Sciences Division, [].

The Atmospheric Radiation Measurement Science Plan for the Atmospheric Radiation Measurement Program book Program was developed to supply an improved predictive capability, particularly as it relates to the cloud–climate feedback.

ARM has made important contributions to the systematic measurement of atmospheric radiation and the atmospheric components that influence radiation.

Program documents, which include the Facility Management Plan, Decadal Vision planning document and progress report. Science reports, which include science plans, field research campaign final reports, and workshop reports. Technical reports, which describe how ARM data products are created and ARM scientific instruments are used.

Get this from a library. Science plan for the atmospheric radiation measurement program (ARM). [United States.

Department of Energy. Environmental Sciences Division.;]. @article{osti_, title = {Atmospheric Radiation Measurement Program Science Plan. Current Status and Future Directions of the ARM Science Program}, author = {Ackerman, Thomas P. and Del Genio, Anthony D. and Ellingson, Robert G. and Ferrare, Richard A.

and Klein, Steve A. and McFarquhar, Gregory M. and Lamb, Peter J. and Long, Charles M. and Verlinde, Johannes}, abstractNote = {The. Home > Monographs > April > Executive Summary: Atmospheric Radiation Measurement Program Science Plan: Current Status and Future Directions of the ARM Science Program.

Ten years ago, at the dedication of the first research site of the Department of Energy’s Atmospheric Radiation Measurement (ARM) program, near Lamont, Oklahoma, Will Happer, director of DOE’s Office of Science, compared the nascent facility to Uraniborg, the island observatory built by Tycho Brahe in 16th-century Denmark.

That comparison puts the role of ARM climate-research facilities in Cited by: @article{osti_, title = {Atmospheric Radiation Measurement Program Plan}, author = {Not Available}, abstractNote = {In order to understand energy's role in anthropogenic global climate change, significant reliance is being placed on General Circulation Models (GCMs).

A major goal of the Department is to foster the development of GCMs capable of predicting the timing and magnitude of. The Biological and Environmental Research (BER) program supports scientific research and facilities to achieve a predictive understanding of complex biological, earth, and environmental systems with the aim of advancing the nation’s energy and infrastructure security.

the Atmospheric Radiation Measurement (ARM) user facility. This Second Edition of An Introduction to Atmospheric Radiation has been extensively revised to address the fundamental study and quantitative measurement of the interactions of solar and terrestrial radiation with molecules, aerosols, and cloud particles in planetary atmospheres.

It contains 70% new material, much of it stemming from the investigation of the atmospheric/5. As with solar radiation measurements, a major client for these measurements is the agricultural community, where evaporation rates are used to determine irrigation scheduling and application rates.

Measurement of evaporation is usually done with an evaporimeter of the evaporation pan type, e.g. the US Class-A pan and Russian GGI pan [ It deals with the ways in which incident solar radiation is transformed into scattered and thermal radiation, and the thermodynamic consequences for the Earth's gaseous envelope, identifying aspects of the interaction between radiation and atmospheric motions as Cited by: The Atmospheric Radiation Measurement Climate Research Facility (ARM Climate Research Facility) is a United States Department of Energy scientific user facility for the study of global climate change by the national and international research community.

The ARM Climate Research Facility consists of global observation sites and research aircraft that measure radiative properties of the Operating agency: United States Department of Energy. The goal of the U.S. Department of Energy's Atmospheric Radiation Measurement (ARM) program is to improve the treatment of cloud-radiative forcing and feedbacks in GCMs.

The ARM program is providing an experimental testbed for the study of important atmospheric processes, particularly cloud-radiative forcing and feedback. of the Department of Energy’s Atmospheric Radiation Measurement (ARM) program, near Lamont, Oklahoma, Will Happer, director of DOE’s Office of Science, compared the nascent facility to Uraniborg, the island observatory built by Tycho Brahe in 16th-century Denmark.

That com-parison puts the role of ARM climate-research facilities inCited by: This Second Edition of An Introduction to Atmospheric Radiation has been extensively revised to address the fundamental study and quantitative measurement of the interactions of solar and terrestrial radiation with molecules, aerosols, and cloud particles in planetary atmospheres.

It contains 70% new material, much of it stemming from the investigation of the atmospheric greenhouse effects of Cited by: AER's radiative transfer models are well validated against atmospheric observations. A validation example of LBLRTM calculations against HIS during CAMEX is provided in Fig. HIS observations from this CAMEX case from 09/29/ have been used extensively in validation studies for a number of forward models.For this case, the HIS sensor had a spectral resolution of cm-1 and flew Cited by:   The very fact that radiation can be absorbed by gases shows that you shouldn’t expect the radiation going into a layer of atmosphere to be the same value when it emerges the other side.

Here’s a simple diagram (which also can be found in Theory and Experiment –. PROPOSAL TO THE DEPARTMENT OF ENERGY ATMOSPHERIC RADIATION MEASUREMENT PROGRAM TO: Dr. Wanda Ferrell US Department of Energy Office of Science Grants and Contracts Division, SC Germantown Road Germantown, MD ATTN: Program Notice TITLE OF PROPOSAL: Vertically resolved aerosol optical properties over the ARM SGP siteFile Size: 1MB.

1 atmospheric radiation measurement program (arm) - summer review 1 2 radiative energy budgets in the atmosphere 5 3 modeling short wave absorption File Size: KB.This information is required by the U.S. Department of Energy Office of Science for documenting the value and usage of ARM User Facility to the research community.

We apologize for any inconvenience; once your profile is updated and complete, you may proceed to order data.Looking for abbreviations of ARMP? It is Atmospheric Radiation Measurement Program. Atmospheric Radiation Measurement Program listed as ARMP.

Atmospheric Radiation Measurement Program - How is Atmospheric Radiation Measurement Program abbreviated? Abalone Recovery and Management Plan: ARMP: Affine Rank Minimization Problem Atmospheric.