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Estimating Heat Fluxes by Merging Profile Formulae and the Energy Budget with a Variational Technique

机译:通过合并轮廓公式和变分技术的能量预算估算热通量

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摘要

A variational technique (VT) is applied to estimate surface sensible and latent heat fluxes based on observations of air temperature, wind speed, and humidity, respectively, at three heights (1 m, 4 m, and 10m), and the surface energy and radiation budgets by the surface energy and radiation system (SERBS). The method fully uses all information provided by the measurements of air temperature, wind, and humidity profiles, the surface energy budget, and the similarity profile formulae as well. Data collected at Feixi experiment station installed by the China Heavy Rain Experiment and Study (HeRES) Program are used to test the method. Results show that the proposed technique can overcome the well-known unstablility problem that occurs when the Bowen method becomes singular; in comparison with the profile method, it reduces both the sensitivities of latent heat fluxes to observational errors in humidity and those of sensible heat fluxes to observational errors in temperature, while the estimated heat fluxes approximately satisfy the surface energy budget. Therefore, the variational technique is more reliable and stable than the two conventional methods in estimating surface sensible and latent heat fluxes.
机译:应用变分技术(VT)分别基于在三个高度(1 m,4 m和10m)上的气温,风速和湿度的观测值估算表面感热通量和潜热通量,以及表面能和表面能和辐射系统(SERBS)的辐射预算。该方法充分利用了测量空气温度,风和湿度曲线,表面能收支以及相似曲线公式所提供的所有信息。该方法使用了由中国大雨实验研究(HeRES)程序安装在肥西实验站的数据进行测试。结果表明,所提出的技术可以克服当Bowen方法变得奇异时发生的众所周知的不稳定问题。与轮廓法相比,它既降低了潜热通量对湿度观测误差的敏感性,又降低了感热通量对温度观测误差的敏感性,而估算的热通量大约满足了表面能的收支。因此,在估算表面感热通量和潜热通量方面,变分技术比两种常规方法更可靠,更稳定。

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