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Assessing atmospheric bias correction for dynamical consistency using potential vorticity

机译:使用潜在涡度评估大气偏差校正的动态一致性

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Correcting biases in atmospheric variables prior to impact studies or dynamical downscaling can lead to new biases as dynamical consistency between the 'corrected' fields is not maintained. Use of these bias corrected fields for subsequent impact studies and dynamical downscaling provides input conditions that do not appropriately represent intervariable relationships in atmospheric fields. Here we investigate the consequences of the lack of dynamical consistency in bias correction using a measure of model consistency—the potential vorticity (PV). This paper presents an assessment of the biases present in PV using two alternative correction techniques—an approach where bias correction is performed individually on each atmospheric variable, thereby ignoring the physical relationships that exists between the multiple variables that are corrected, and a second approach where bias correction is performed directly on the PV field, thereby keeping the system dynamically coherent throughout the correction process. In this paper we show that bias correcting variables independently results in increased errors above the tropopause in the mean and standard deviation of the PV field, which are improved when using the alternative proposed. Furthermore, patterns of spatial variability are improved over nearly all vertical levels when applying the alternative approach. Results point to a need for a dynamically consistent atmospheric bias correction technique which results in fields that can be used as dynamically consistent lateral boundaries in follow-up downscaling applications.
机译:在进行影响研究或动态缩小之前,校正大气变量中的偏差会导致新的偏差,因为无法保持“校正”场之间的动态一致性。这些偏差校正的字段用于后续影响研究和动态降尺度的使用提供的输入条件不能恰当地表示大气场中的相互关系。在这里,我们使用模型一致性(潜在涡度(PV))来研究偏差校正中缺乏动态一致性的后果。本文介绍了使用两种替代校正技术对PV中存在的偏差进行评估的方法:一种方法是对每个大气变量分别进行偏差校正,从而忽略了校正后的多个变量之间存在的物理关系;第二种方法是偏置校正直接在PV场上执行,从而在整个校正过程中保持系统动态一致。在本文中,我们表明,偏差校正变量独立地导致对流层顶上方PV字段的均值和标准偏差的误差增加,而使用替代方案时,这些误差会得到改善。此外,使用替代方法时,几乎在所有垂直级别上的空间变异性模式都得到了改善。结果表明需要一种动态一致的大气偏差校正技术,该技术可产生可在后续降尺度应用中用作动态一致的横向边界的场。

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