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Differential Absorption Microwave Radar Measurements for Remote Sensing of Atmospheric Pressure

机译:用于遥感大气压的微分吸收微波雷达测量

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The accuracy of numerical weather model predictions of the intensity and track of tropical storms may be improved by large spatial coverage and frequent sampling of sea surface barometry. The feasibility of a microwave radar operating at moderate to strong O{sub}2 absorption bands in the frequency range of 50~56 GHz to remotely measure surface barometric pressure may provide such capability. At these radar wavelengths, the reflection of radar echoes from water surfaces is strongly attenuated by atmospheric column O{sub}2. Because of the uniform mixture of O{sub}2 gases within the atmosphere, the total atmospheric column O{sub}2 is proportional to atmospheric path lengths and the total atmospheric column air, and thus, to surface barometric pressures. Recent research has developed a technique based on the use of a dual-frequency, O{sub}2-band radar to overcome many of the difficulties associated with techniques requiring larger frequency separation. The ratio of reflected radar signals at multiple wavelengths are used to minimize the effect of microwave absorption by liquid water, water vapor in the atmosphere and the influences of sea surface reflection over the frequency of operation. Langley Research Center (LaRC) has developed a radar based on this measurement technique to estimate barometric pressure. This paper will present an overview of the differential absorption measurement concept and will discuss a radar instrument to verify the differential O{sub}2 absorption measurement approach. Results of instrument functional testing and initial measurements will be presented.
机译:通过大型空间覆盖率和海面气压测量的频繁采样,可以提高对热带风暴强度和轨道的数值天气模型预测的准确性。在50〜56GHz的频率范围内的中等至强O {Sub} 2的微波雷达的可行性在50〜56GHz至远程测量表面气压的频率范围内可以提供这种能力。在这些雷达波长下,通过大气柱O {sub} 2强烈衰减水面的雷达回波的反射。由于大气内的O {亚} 2的均匀混合物,总大气柱O {Sub} 2与大气路径长度和总大气柱空气成比例,从而对表面气压压力。最近的研究开发了一种基于使用双频,o {Sub} 2带雷达的技术,以克服与需要较大频率分离的技术相关的许多困难。多个波长的反射雷达信号的比率用于最小化液态水,大气中的水蒸气的微波吸收的影响以及海面反射在操作频率上的影响。 Langley Research Center(LARC)基于该测量技术开发了一种雷达,以估计气压。本文将概述差动吸收测量概念,并将讨论雷达仪器,以验证差分O {Sub} 2吸收测量方法。仪器功能测试和初始测量结果将显示出来。

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