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Exploiting the structure of MWR-derived temperature profile for stable boundary-layer height estimation

机译:利用MWR衍生温度曲线的结构以进行稳定的边界层高度估计

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A method for the estimation of Stable Boundary Layer Height (SBLH) using curvature of the potential temperature profiles retrieved by a Microwave Radiometer (MWR) is presented. The vertical resolution of the MWR-derived temperature profile decreases with the height. A spline interpolation is carried-out to obtain a uniformly discretized temperature profile. The curvature parameter is calculated from the first and second order derivatives of the interpolated potential temperature profile. The first minima of the curvature parameter signifies the point where the temperature profile starts changing from the stable to the residual conditions. The performance of the method is analyzed by comparing it against physically idealized models of the stable boundary-layer temperature profile available in the literature. There are five models which include stable-mixed, mixed-linear, linear, polynomial and exponential. For a given temperature profile these five models are fitted using the non-linear least-squares approach. The best fitting model is chosen as the one which fits with the minimum root-mean-square error. Comparison of the SBLH estimates from curvature-based method with the physically idealized models shows that the method works qualitatively and quantitatively well with lower variation. Potential application of this approach is the situation where given temperature profiles are significantly deviant from the idealized models. The method is applied to data from a Humidity-and-Temperature Profiler (HATPRO) MWR collected during the HD(CP)~2 Observational Prototype Experiment (HOPE) campaign at Jiilich, Germany. Radiosonde data, whenever available, is used as the ground-truth.
机译:呈现了使用微波辐射计(MWR)检索的潜在温度分布的曲率估计稳定边界层高度(SBLH)的方法。 MWR衍生的温度曲线的垂直分辨率随高度而减小。进行样条插值以获得均匀离散的温度曲线。曲率参数由内插电位温度分布的第一和二阶衍生物计算。曲率参数的第一个最小值表示温度曲线从稳定变为剩余条件的点的点。通过将其与文献中可用的稳定边界层温度曲线的物理理想化模型进行比较来分析该方法的性能。有五种型号,包括稳定混合,混合线性,线性,多项式和指数。对于给定的温度分布,这五种型号使用非线性最小二乘法接近装配。选择最佳拟合模型作为适合最小根均方误差的拟合模型。基于曲率的方法的比较与物理上理想的模型的基于曲率的方法表明,该方法与较低变化的定性和定量良好地工作。这种方法的潜在应用是给定温度型材从理想化模型显着偏离的情况。该方法应用于Jiilich,德国Jiilich期间收集的湿度和温度分析器(HATPRO)MWR中收集的数据。无可置能的数据,无论何时可用,都被用作地面真理。

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