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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Validation and determination of ice water content-radar reflectivity relationships during CRYSTAL-FACE: Flight requirements for future comparisons
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Validation and determination of ice water content-radar reflectivity relationships during CRYSTAL-FACE: Flight requirements for future comparisons

机译:验证和冰水的决心content-radar反射率的关系在晶面:未来飞行要求比较

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摘要

In situ measurements of cirrus ice water content (IWC) by the Harvard water vapor and total water instruments during Cirrus Regional Study of Tropical Anvils and Cirrus Layers-Florida Area Cirrus Experiment are compared with remote sensing data made by the Cloud Radar System instrument in order to derive and validate an empirical IWC-radar relflectivity Z e relationship. The comparisons show that for measurements of in situ IWC and remotely measured radar reflectivity, collocated within 2 km of each other, a single IWC-Z e relationship can be found that fits the data with an uncertainty of ±20–30%. A cloud resolving model shows this level of uncertainty to be consistent with sampling errors associated with comparing two measurements that are not collocated. Uncertainties are quantified in the use of in situ data to validate the retrieval algorithms used to derive the IWC of clouds from remote sensing observations, such as radar reflectivity Z e . Uncertainties are classified into instrumental uncertainties, uncertainties related to sampling errors, and uncertainties in using a single IWC-Z e relationship to describe a cloud.
机译:卷冰水的原位测量的内容(IWC)由哈佛水蒸气和总水仪器在卷云区域的研究热带铁砧和卷Layers-Florida区域西锐实验比较遥远传感数据的云雷达系统为了推导和验证工具实证IWC-radar relflectivity Z e的关系。原位测量IWC和远程测量雷达反射率,并置在2公里的范围内对方,一个IWC-Z e关系发现与数据的吻合程度的不确定性±20 - 30%。的不确定性与抽样相一致错误与比较两个测量不集中的。量化的使用现场数据验证获得国际捕鲸委员会使用的检索算法云从遥感观测的随着雷达反射率Z e。分为工具性的不确定性,不确定性相关抽样错误,不确定性在使用单一IWC-Z e描述一个云的关系。

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