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An integrated approach to estimate instantaneous near-surface air temperature and sensible heat flux fields during the SEMAPHORE experiment

机译:在SEMAPHORE实验期间估算瞬时近地表空气温度和显热通量场的综合方法

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摘要

A new technique was developed to retrieve near-surface instantaneous air temperatures and turbulent sensible heat fluxes using satellite data during the Structure des Echanges Mer-Atmosphere, Proprietes des Heterogeneites Oceaniques: Recherche Experimentale (SEMAPHORE) experiment, which was conducted in 1993 under mainly anticyclonic conditions. The method is based on a regional, horizontal atmospheric temperature advection model whose inputs are wind vectors, sea surface temperature fields, air temperatures around the region under study, and several constants derived from in situ measurements. The intrinsic rms error of the method is 0.7 deg C in terms of air temperature and 9 W m~(-2) for the fluxes, both at 0.16 deg X 0.16 deg and 1.125 deg X 1.125 deg resolution. The retrieved air temperature and flux horizontal structures are in good agreement with fields from two operational general circulation models. The application to SEMAPHORE data involves the First European Remote Sensing Satellite (ERS-l) wind fields, Advanced Very High Resolution Radiometer (AVHRR) SST fields, and European Centre for Medium-Range Weather Forecasts (ECMWF) air temperature boundary conditions. The rms errors obtained by comparing the estimations with research vesselmeasurements are 0.3 deg C and 5 W m~(-2).
机译:开发了一种新技术来检索近地瞬时空气温度和湍流感热通量,该数据是在“结构变化的大气”,“异质性海洋学:Recherche实验性”(SEMAPHORE)实验期间使用卫星数据进行的,该实验于1993年进行,主要是在反气旋作用下进行的条件。该方法基于区域水平水平大气温度对流模型,该模型的输入为风向矢量,海面温度场,研究区域周围的气温以及从原位测量得出的几个常数。该方法的固有均方根误差在空气温度方面为0.7摄氏度,在通量方面为9 W m〜(-2),分辨率均为0.16 deg X 0.16 deg和1.125 deg X 1.125 deg。检索到的空气温度和通量水平结构与来自两个运行的一般循环模型的场非常吻合。 SEMAPHORE数据的应用涉及第一批欧洲遥感卫星(ERS-1)风场,超高分辨率高分辨率辐射计(AVHRR)SST场和欧洲中距离天气预报中心(ECMWF)空气温度边界条件。通过将估计值与研究船的测量值进行比较所获得的均方根误差为0.3摄氏度和5 W m〜(-2)。

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