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金星:雷达对重力势的测定。

Venus: radar determination of gravity potential.

出版信息

Science. 1973 Feb 2;179(4072):473-6. doi: 10.1126/science.179.4072.473.

Abstract

We describe a method for the determination of the gravity potential of Venus from multiple-frequency radar measurements. The method is based on the strong frequency dependence of the absorption of radio waves in Venus' atmosphere. Comparison of the differing radar reflection intensities at several frequencies yields the height of the surface relative to a reference pressure contour; combination with measurements of round-trip echo delays allows the pressure, and hence the gravity potential contour, to be mapped relative to the mean planet radius. Since calibration data from other frequencies are unavailable, the absorption-sensitive Haystack Observatory data have been analyzed under the assumption of uniform surface reflectivity to yield a gravity equipotential contour for the equatorial region and a tentative upper bound of 6 x 10(-4) on the fractional difference of Venus' principal equatorial moments of inertia. The minima in the equipotential contours appear to be associated with topographic minima.

摘要

我们描述了一种从多频雷达测量中确定金星重力势的方法。该方法基于无线电波在金星大气中强烈的频率依赖性吸收。比较几个频率的不同雷达反射强度,可以得到表面相对于参考压力轮廓的高度; 结合往返回波延迟的测量,可以绘制相对于平均行星半径的压力,从而绘制重力势轮廓。由于其他频率的校准数据不可用,因此在假设表面反射率均匀的情况下,对 Haystack 天文台的吸收敏感数据进行了分析,得出了赤道地区的重力等势线轮廓,并初步确定了金星主赤道惯性矩的分数差的上限为 6 x 10(-4)。等势线轮廓中的最小值似乎与地形最小值有关。

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