Thermophysics
Template:Short description Thermophysics is the application of thermodynamics to geophysics and to planetary science more broadly. It may also be used to refer to the field of thermodynamic and transport properties.[1]
Remote sensing
Earth thermophysics is a branch of geophysics that uses the naturally occurring surface temperature as a function of the cyclical variation in solar radiation to characterise planetary material properties.
Thermophysical properties are characteristics that control the diurnal, seasonal, or climatic surface and subsurface temperature variations (or thermal curves) of a material. The most important thermophysical property is thermal inertia, which controls the amplitude of the thermal curve and albedo (or reflectivity), which controls the average temperature.
This field of observations and computer modeling was first applied to Mars due to the ideal atmospheric pressure for characterising granular materials based upon temperature.Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. The Mariner 6, Mariner 7, and Mariner 9 spacecraft carried thermal infrared radiometers,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found.Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. and a global map of thermal inertia was produced from modeled surface temperaturesLua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. collected by the Infrared Thermal Mapper Instruments (IRTM) on board the Viking 1 and 2 Orbiters.
The original thermophysical models were based upon the studies of lunar temperature variations.Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found.Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. Further development of the models for Mars included surface-atmosphere energy transfer,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. atmospheric back-radiation,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. surface emissivity variations,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. CO2 frost and blocky surfaces,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. variability of atmospheric back-radiation,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. effects of a radiative-convective atmosphere,Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found. and single-point temperature observations.Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found.Lua error in package.lua at line 80: module 'Module:Footnotes/anchor_id_list' not found.
References
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- ^ Page Module:Citation/CS1/styles.css has no content."International Journal of Thermophysics". Springer. Retrieved 2022-12-13.
- Page Module:Citation/CS1/styles.css has no content.Haberle, R.M.; Jakosky, B.M. (1991). "Atmospheric effects on the remote determination of thermal inertia on Mars". Icarus. 90 (2): 187–204. Bibcode:1991Icar...90..187H. doi:10.1016/0019-1035(91)90100-8.
- Page Module:Citation/CS1/styles.css has no content.Hayashi, J.N.; Jakosky, B.M.; Haberle, R.M. (1995). "Atmospheric effects on the mapping of Martian thermal inertia and thermally derived albedo". J. Geophys. Res. 100 (E3): 5277–5284. Bibcode:1995JGR...100.5277H. doi:10.1029/94JE02449. hdl:2060/19940031630.
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- Page Module:Citation/CS1/styles.css has no content.Kieffer, H.H.; Martin, T.Z.; Peterfreund, A.R.; Jakosky, B.M.; Miner, E.D.; Palluconi, F.D. (1977). "Thermal and Albedo Mapping of Mars During the Viking Primary Mission". J. Geophys. Res. 82 (28): 4249–4290. Bibcode:1977JGR....82.4249K. doi:10.1029/JS082i028p04249.
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- Page Module:Citation/CS1/styles.css has no content.Mellon, M.T; Jakosky, B.M.; Kieffer, H.H.; Christensen, P.R. (2000). "High Resolution Thermal Inertia Mapping from the Mars Global Surveyor Thermal Emission Spectrometer". Icarus. 148 (2): 437–455. Bibcode:2000Icar..148..437M. doi:10.1006/icar.2000.6503.
- Page Module:Citation/CS1/styles.css has no content.Neugebauer, G.; Munch, G.; Kieffer, H.H.; Chase, S.C.; Miner, E. (1971). "Mariner 1969 Infrared Radiometer Results: Temperatures and Thermal Properties of the Martian Surface" (PDF). Astron. J. 76: 719. Bibcode:1971AJ.....76..719N. doi:10.1086/111189.
- Page Module:Citation/CS1/styles.css has no content.Wechsler, A.E.; Glaser, P.E. (1965). "Pressure Effects on Postulated Lunar Materials". Icarus. 4 (4): 335. Bibcode:1965Icar....4..335W. doi:10.1016/0019-1035(65)90038-2.
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