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A New Sensitivity Analysis and Solution Method for Scintillometer Measurements of Area-Averaged Turbulent Fluxes

机译:面积平均湍流通量闪烁仪测量的新灵敏度分析和求解方法

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Scintillometer measurements of the turbulence inner-scale length (l_mathrm{o }) and refractive index structure function (C_n^2) allow for the retrieval of large-scale area-averaged turbulent fluxes in the atmospheric surface layer. This retrieval involves the solution of the non-linear set of equations defined by the Monin–Obukhov similarity hypothesis. A new method that uses an analytic solution to the set of equations is presented, which leads to a stable and efficient numerical method of computation that has the potential of eliminating computational error. Mathematical expressions are derived that map out the sensitivity of the turbulent flux measurements to uncertainties in source measurements such as (l_mathrm{o }). These sensitivity functions differ from results in the previous literature; the reasons for the differences are explored.
机译:闪烁仪测量湍流内部尺度长度(l_mathrm {o})和折射率结构函数(C_n ^ 2)可以检索大气表层中大规模面积平均的湍流。该检索涉及Monin–Obukhov相似性假设所定义的非线性方程组的解。提出了一种使用解析解求解方程组的新方法,这导致了稳定有效的数值计算方法,具有消除计算误差的潜力。导出了数学表达式,这些表达式将湍流通量测量的灵敏度映射到源测量中的不确定性,例如(l_mathrm {o})。这些灵敏度函数与以前的文献中的结果不同。探索差异的原因。

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