灰区分辨率下行星边界层方案的单变量通量分配函数

Mengjuan Liu, Wei Huang, Hai Chu, Bowen Zhou
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引用次数: 0

摘要

当数值天气预报模式的水平网格间距接近千米尺度(即所谓的灰区范围)时,对流边界层(CBL)中的湍流通量部分是解析的,部分是亚网格尺度(SGS)的。了解分辨尺度和亚网格尺度湍流通量之间的分区是建立尺度自适应行星边界层(PBL)方案的关键,该方案能够在网格间距变化的情况下调节亚网格尺度通量。然而,通量分区不仅取决于水平网格间距,还取决于局部高度、边界层的体积稳定性和特定的湍流通量。这种多变量函数很难通过分析来构建,因此在尺度自适应 PBL 方案中实施这些函数时,总会涉及一定程度的近似,从而导致误差。本研究引入了基于物理的通量分区函数视角,大大简化了函数的实现,而且精度很高。通过引入一个适当的缩放长度 λ 来考虑高度和牛顿稳定性的相关性,分区函数的维数被简化为一个单一的无维群。基于对 CBL 综合大涡流模拟数据集的分析,进一步证明了 λ 的高度和体积稳定性依赖性可以分别用相似性长度标度和稳定性系数来表示。由此产生的单变量分区函数被纳入传统的一阶 PBL 方案,作为概念验证。我们的结果表明,增强方案在灰区分辨率下很好地还原了 SGS 流量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Univariate Flux Partition Functions for Planetary Boundary Layer Schemes at Gray Zone Resolutions
When the horizontal grid spacing of a numerical weather prediction model approaches kilometer scale, the so-called gray zone range, turbulent fluxes in the convective boundary layer (CBL) are partially resolved and partially subgrid-scale (SGS). Knowledge of the partition between resolved and SGS turbulent fluxes is key to building scale-adaptive planetary boundary layer (PBL) schemes that are capable of regulating the SGS fluxes with varying grid spacing. However, flux partition depends not only on horizontal grid spacing, but also on local height, bulk stability of the boundary layer and the particular turbulent flux. Such multivariate functions are difficult to construct analytically, so their implementations in scale-adaptive PBL schemes always involve certain levels of approximation that can lead to inaccuracies. This study introduces a physically-based perspective for the flux partition functions that greatly simplifies their implementation with high accuracy. By introducing an appropriate scaling length λ that accounts for both height and bullk stability dependencies, the dimensionality of the partition functions is reduced to a single dimensionless group. Based on the analysis of a comprehensive large-eddy simulation dataset of the CBL, it is further shown that λ’s height and bulk stability dependencies can be separately represented by a similarity length scale and a stability coefficient. The resulting univariate partition functions are incorporated into a traditional first-order PBL scheme as a proof of concept. Our results show that the augmented scheme well-reproduces the SGS fluxes at gray zone resolutions.
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