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Investigating cloud radar sensitivity to optically thin cirrus using collocated Raman lidar observations

机译:使用并置拉曼激光雷达观测研究云雷达对光学薄卷云的敏感性

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The sensitivity of the millimeter cloud radar (MMCR) to optically thin single-layer cirrus at the Atmospheric Radiation Measurement (ARM) Southern Great Plains (SGP) site is investigated using collocated Raman lidar observations. The sensitivity is characterized in terms of cloud optical depth (OD) and infrared (IR) radiative flux using over three years of coincident Raman lidar and MMCR observations. For cases when the Raman lidar is not fully attenuated (OD < 2.0) the MMCR detects approximately 70% of the total cloud OD with the majority of missed cloud OD occurring near cloud top. If only MMCR observations are used for computing cloudy top-of-the-atmosphere (TOA) IR flux, the missed cloud OD results in TOA flux biases from 0 to over 100 W/m ~2; however, the most frequently occurring bias is approximately 16 W/m~2. This result highlights the importance of combining Raman lidar, or other sensitive cloud lidars that are able to measure cloud extinction directly, with the MMCR in order to accurately characterize the cloud radiative forcing for thin cirrus cases.
机译:使用并置的拉曼激光雷达观测资料,研究了毫米云雷达(MMCR)对大气辐射测量(ARM)南部大平原(SGP)站点的光学薄单层卷云的敏感性。使用三年以上的拉曼激光雷达和MMCR同步观测,可以根据云的光学深度(OD)和红外(IR)辐射通量来表征灵敏度。对于拉曼激光雷达未完全衰减(OD <2.0)的情况,MMCR可检测到总云OD的约70%,而大部分漏失的云OD都出现在云顶附近。如果仅将MMCR观测值用于计算多云的大气顶(TOA)红外通量,则错过的云OD会导致TOA通量偏差从0到超过100 W / m〜2;但是,最常出现的偏压约为16 W / m〜2。该结果突出了将拉曼激光雷达或其他能够直接测量云消光的敏感云激光雷达与MMCR结合使用的重要性,以便准确地描述薄卷云情况下的云辐射强迫。

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