首页> 外文会议>Specialist Meeting on Microwave Radiometry and Remote Sensing of the Environment >A Compact Airborne G-band (183GHz) Water Vapor Radiometer and Retrievals of Liquid Cloud Parameters from Coincident Radiometer and Millimeter Wave Radar Measurements
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A Compact Airborne G-band (183GHz) Water Vapor Radiometer and Retrievals of Liquid Cloud Parameters from Coincident Radiometer and Millimeter Wave Radar Measurements

机译:紧凑的空气流量(183GHz)水蒸气辐射计和来自重合辐射计和毫米波雷达测量的液体云参数检索

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ProSensing Inc. has developed a G-band (183GHz, 1.5mm wavelength) water Vapor Radiometer (GVR) for measuring low concentrations of atmospheric water vapor and liquid water. Using four double sideband receiver channels, the instrument measures brightness temperature at 183.31 +-1, +-3, +-7 and +-14GHz [1][2]. An airborne version of the instrument, packaged and wired to operate from a standard PMS probe canister, was successfully tested onboard the National Research Council of Canada Convair-580 aircraft during the Canadian CloudSat and CALIPSO validation flights (C3VP) through the winter of 2006-07. The Zenith G-band radiometer brightness temperature data collected with the GVR were complemented with co-located cloud reflectivity measurements with the NRC W and X-band (NAWX) radar system and in situ probes. By flying the aircraft in a stepped and porpoising ascent/descent patterns, liquid cloud water content was estimated from the GVR retrieved liquid water path. The effective radius and number density of liquid clouds were then estimated by combining the liquid water content with the W-band radar reflectivity factor (2) and by applying a small correction factor, based on the characteristic drop size distribution shape of the observed cloud.
机译:ProSensing公司已开发出G带(183GHz,1.5毫米波长)水蒸气辐射计(GVR),用于测量低浓度的大气中的水蒸气和液态水的。使用四个双边带接收器通道,该仪器测量亮度温度在183.31 + -1,+ -3,+ -7和+ -14GHz [1] [2]。仪器,包装和有线从标准PMS探测罐操作,一个机载版本通过2006-冬季试验成功板载加拿大康维尔-580飞机的国家研究理事会,加拿大是CloudSat和CALIPSO验证飞行期间(C3VP) 07。与GVR收集的天顶G谱带辐射计亮度温度数据,用共同位于云反射率测量与NRC W和X波段(NAWX)雷达系统和原位探针补充。通过飞行飞机以阶梯和前后震动上升/下降模式,液体云水含量估计从GVR检索液态水路径。液体云的有效半径和个数密度。然后通过将液体水含量与W波段雷达反射率因子(2)相结合,并通过应用基于所观察到的云的特性液滴尺寸分布的形状的小的修正系数,来估计。

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