| タイトル | Microwave brightness temperature of a windblown sea |
| 本文(外部サイト) | http://hdl.handle.net/2060/19720021675 |
| 著者(英) | Hall, F. G. |
| 著者所属(英) | NASA Johnson Space Center |
| 発行日 | 1972-01-21 |
| 言語 | eng |
| 内容記述 | A mathematical model is developed for the apparent temperature of the sea at all microwave frequencies. The model is a numerical model in which both the clear water structure and white water are accounted for as a function of wind speed. The model produces results similar to Stogryn's model at 19.35 GHz for wind speeds less than 8 m/sec; it can use radiosonde data to calculate atmospheric effects and can incorporate an empirically determined antenna gain pattern. The corresponding computer program is of modular design and the logic of the main program is capable of treating a horizontally inhomogeneous surface or atmosphere. It is shown that a variation of microwave brightness temperature with zenith angle is necessary to produce the wind sensitivity of the horizontally polarized brightness temperature; the variation of sky temperature with frequency is sufficient to produce a frequency dependent wind sensitivity. |
| NASA分類 | GEOPHYSICS |
| レポートNO | 72N29325 |
| 権利 | No Copyright |
| URI | https://repository.exst.jaxa.jp/dspace/handle/a-is/570804 |