学位论文详细信息
Millimeter-wavelength remote sensing of the atmospheric structure and composition of Venus
Venus;Atmosphere;Remote;Sensing;Microwave;Millimeter-wavelength;Composition;Sulfuric;Acid;Radiative;Transfer
Akins, Alexander Brooks ; Steffes, Paul G. Electrical and Computer Engineering Cohen, Morris Durgin, Gregory Scott, Waymond Schmidt, Britney ; Steffes, Paul G.
University:Georgia Institute of Technology
Department:Electrical and Computer Engineering
关键词: Venus;    Atmosphere;    Remote;    Sensing;    Microwave;    Millimeter-wavelength;    Composition;    Sulfuric;    Acid;    Radiative;    Transfer;   
Others  :  https://smartech.gatech.edu/bitstream/1853/62798/1/AKINS-DISSERTATION-2020.pdf
美国|英语
来源: SMARTech Repository
PDF
【 摘 要 】

Microwave radiometric observations and radio occultations are capable of providing insight into the properties of the Venus atmosphere within and below layers of clouds which cover the entire planet. To interpret such observations, accurate models for the absorption of the atmospheric constituents of Venus are necessary. The objective of this research has been to further understanding of the millimeter-wavelength spectrum of Venus. Over 400 laboratory measurements have been made of the opacity of H2SO4 vapor at W, F, and Ka Band in mixtures containing up to 3 bars of CO2 at temperatures ranging from 535-585 K, simulating the conditions of the lower atmosphere of Venus. The results of these measurements and prior laboratory studies at microwave frequencies have been used to derive a model for H2SO4 vapor opacity valid at frequencies below 150 GHz. This model is incorporated into a microwave radiative transfer model of the Venus atmosphere, which has been used to predict the penetration depth of a radio occultation signal at 32 GHz. Low-noise images of Venus have also been developed from observations made using the CARMA and ALMA radio telescopes and compared against the emission spectrum produced by the model. Longitudinal brightness variations in these images are significantly lower than are seen in previous observations.

【 预 览 】
附件列表
Files Size Format View
Millimeter-wavelength remote sensing of the atmospheric structure and composition of Venus 34514KB PDF download
  文献评价指标  
  下载次数:2次 浏览次数:10次