A survey of the methods developed for the inversion of the radiative transfer problem for planetary atmospheres
Methods for obtaining temperature profile of planetary atmosphere from remote radiometric measurements
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Methods for obtaining temperature profile of planetary atmosphere from remote radiometric measurements
Heat transfer and temperature distribution of conical porous membrane used as decelerator during planetary entry
Criteria for the appearance of a double maximum in the absorption spectra are derived. A very oversimplified model atmosphere which consists of two isothermal layers of gas is considered. The model involves the presence of two absorption cells in series, in front of a light source that has a higher temperature than either of the cells. The possibility that the double maximum is due to a quantum-mechanical interaction is studied. It is concluded that the effect reported by Kaplan (1962) was due to noise, and that it is impossible to detect temperatures as high as 700 K in the atmosphere of Venus by means of ground-based observations of the 7820 A carbon dioxide band.
The investigation of n-GaN/Al(x)Ga(1-x)N/n-GaN (n-1-n) devices for pressure sensors in extreme planetary environments are presented.
The cross-spectra of temperature and ozone mass mixing ratio at 42 km and 28 km has been determined for spring (1971) and summer (1971-2) over Christchurch, New Zealand (44 S, 172 E). The sources of data are the SCR and BUV experiments on Nimbus 4. The observed covariances are compared with a model in which the temperature and ozone perturbations are forced by an upward propagating planetary wave. The agreement between the observations and the model is reasonable. It is suggested that this cross-spectral method permits an estimate of the meridional gradient of ozone mass mixing ratio from measurements of the vertical profile of ozone mass mixing ratio at one location, supported by temperature profiles from at least two locations.
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Some OGO-6 observations of the upper atmosphere, planetary atmospheric gases, thermospheric particle concentrations, and ion temperature of planetary ionospheres are examined.
Self-broadened, air-broadened and CO2-broadened half-widths of lines R(0) through R(16) in the CO fundamental have been measured at 100 K (self-broadening only), 200 K, 250 K and 300 K using the Ladenburg-Reiche curve-of-growth. The relation which we found previously for the nitrogen-broadened half-widths of R(0), R(8), and R(16), is shown to be valid for all of the line widths measured in the present study.
New reflectance spectra of Ganymede, Europe, Callisto, Io, Saturn's rings, and Mars were obtained. The new data is combined with data covering other spectral regions for compositional interpretation. The spectral properties of water and mixtures of water plus other minerals were studied in the laboratory at the low temperatures typical of Mars, the Galilean satellites, and Saturn's rings. High precision reflectance spectra of water ice were studied.
Venus atmosphere, surface temperature and radiation characteristics
Results of studies of hydrogen-dominated atmospheres in which exospheric temperatures were calculated to estimate the evaporative loss rates of the constituents. Expressions are given for the exospheric temperature of a two-component diffusive equilibrium model which consists of a lighter molecule dominating the thermosphere and absorbing solar EUV, and a heavier constituent providing radiative cooling in the vicinity of the mesopause. The model approximates well the assumed atmospheres, but the resulting expressions may have wider application. The dynamics of an expanding atmosphere are discussed. A three-dimensional outflow against the back pressure of the solar wind may be configured like a comet's tail.
Planetary atmosphere structure determined from entry vehicle onboard measurements of pressure, temperature, and acceleration
Past and present planetary exploration is briefly reviewed, and the planned 1996 Cassini mission to Saturn and Titan is examined. The CIRS experiment aboard Cassini, which will retrieve information on the atmospheres of Titan and Saturn, is discussed. Ongoing efforts to build a high-sensitivity, high-Tc bolometer that would greatly improve detection in Titan's atmosphere are addressed.
Heating rates in gas mixtures of planetary atmospheres predicted by equation using transport properties of gases at lower temperatures
Mars upper atmosphere and single-layer ionosphere UV photoionization, temperature profile and chemical composition
A method is presented for evaluating the fluxes of sensible and latent heating at the land surface, using satellite-measured surface temperature changes in a composite surface layer-mixed layer representation of the planetary boundary layer. The basic prognostic model is tested by comparison with synoptic station information at sites where surface evaporation climatology is well known. The remote sensing version of the model, using satellite-measured surface temperature changes, is then used to quantify the sharp spatial gradient in surface heating/evaporation across the central United States. An error analysis indicates that perhaps five levels of evaporation are recognizable by these methods and that the chief cause of error is the interaction of errors in the measurement of surface temperature change with errors in the assigment of surface roughness character. Finally, two new potential methods for remote sensing of the land-surface energy balance are suggested which will relay on space-borne instrumentation planned for the 1990s.