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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Evaluation of satellite-based upper troposphere cloud top height retrievals in multilayer cloud conditions during TC4
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Evaluation of satellite-based upper troposphere cloud top height retrievals in multilayer cloud conditions during TC4

机译:TC4多层云条件下基于卫星的对流层上层云顶高度反演的评估

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摘要

Upper troposphere cloud top heights (CTHs), restricted to cloud top pressures (CTPs) < 500 hPa, inferred using four satellite retrieval methods applied to Twelfth Geostationary Operational Environmental Satellite (GOES-12) data are evaluated using measurements during the July–August 2007 Tropical Composition, Cloud and Climate Coupling Experiment (TC4). The four methods are the single-layer CO_2-absorption technique (SCO2AT), a modified CO_2-absorption technique (MCO2AT) developed for improving both single-layered and multilayered cloud retrievals, a standard version of the Visible Infrared Solar-infrared Split-window Technique (old VISST), and a new version of VISST (new VISST) recently developed to improve cloud property retrievals. They are evaluated by comparing with ER-2 aircraft-based Cloud Physics Lidar (CPL) data taken during 9 days having extensive upper troposphere cirrus, anvil, and convective clouds. Compared to the 89% coverage by upper tropospheric clouds detected by the CPL, the SCO2AT, MCO2AT, old VISST, and new VISST retrieved CTPs < 500 hPa in 76, 76, 69, and 74% of the matched pixels, respectively. Most of the differences are due to subvisible and optically thin cirrus clouds occurring near the tropopause that were detected only by the CPL. The mean upper tropospheric CTHs for the 9 days are 14.2 (+2.1) km from the CPL and 10.7 ( ±2.1), 12.1 ( ±1.6), 9.7 (±2.9), and 11.4 (±2.8) km from the SCO2AT, MCO2AT, old VISST, and new VISST, respectively. Compared to the CPL, the MCO2AT CTHs had the smallest mean biases for semitransparent high clouds in both single-layered and multilayered situations whereas the new VISST CTHs had the smallest mean biases when upper clouds were opaque and optically thick. The biases for all techniques increased with increasing numbers of cloud layers. The transparency of the upper layer clouds tends to increase with the numbers of cloud layers.
机译:使用适用于第十二对地球静止业务环境卫星(GOES-12)数据的四种卫星检索方法推断出的对流层上层云顶高度(CTH)限制在<500 hPa的云层顶压力(CTP),使用2007年7月至8月期间的测量值进行评估热带成分,云与气候耦合实验(TC4)。四种方法是单层CO_2吸收技术(SCO2AT),改进后的CO_2吸收技术(MCO2AT),该技术用于改善单层和多层云的获取,以及可见光红外-红外分割窗口的标准版本技术(旧的VISST)和新版本的VISST(新的VISST)最近开发出来,用于改善云属性检索。他们通过与ER-2飞机基于云物理激光雷达(CPL)的数据进行了评估,该数据在9天之内具有对流层高层卷云,铁砧和对流云。与CPL检测到的对流层高空云覆盖率89%相比,SCO2AT,MCO2AT,旧VISST和新VISST分别在匹配像素的76%,76%,69%和74%中检索了<500 hPa的CTP。大多数差异是由于仅在CPL的情况下在对流层顶附近出现了不可见和光学稀薄的卷云。这9天的平均对流层上层CTH距离CPL分别为14.2(+2.1)km,距离SCO2AT,MCO2AT分别为10.7(±2.1),12.1(±1.6),9.7(±2.9)和11.4(±2.8)km ,旧的VISST和新的VISST。与CPL相比,在单层和多层情况下,MCO2AT CTH的半透明高云平均偏差最小,而新的VISST CTH在上云不透明且光学上较厚时,平均偏差最小。随着云层数量的增加,所有技术的偏见也随之增加。上层云的透明性倾向于随云层数的增加而增加。

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