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Mesoscale nonhydrostatic and hydrostatic pressure gradient forces - Theory

机译:中尺度非静压和静压梯度力-理论

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摘要

A theory is presented for the evaluation of the different terms of the pressure gradient force, when mesoscale flow is driven by a sensible heat source in the planetary boundary layer (PBL), or by an elevated confined heat source, such as the release of the latent heat of condensation in a cloud. The nonlinear and linear, and the nonhydrostatic and the hydrostatic pressure gradient contributions are evaluated. The validity of the different approximations is discussed as a function of time and space scales. In addition, the validity of this approach is explored as a function of atmospheric environmental parameters, such as static stability, large-scale flow, and dissipation. By accessing the relative importance of each contribution, specific solution techniques for mesoscale atmospheric flows can be adopted. For example, when the linear contributions dominate, an exact analytic model could be used, rather than relying on numerical approximation solution techniques. When the hydrostatic contribution dominates, the spatial variation of the vertical temperature profile can be used to uniquely define the horizontal pressure gradient force. [References: 21]
机译:当中尺度流是由行星边界层(PBL)中的显热源或升高的密闭热源(例如释放的压力)驱动时,提出了一种理论来评估压力梯度力的不同项。云中凝结的潜热。评估了非线性和线性以及非静水压力和静水压力梯度的贡献。讨论了不同近似值的有效性与时间和空间尺度的关系。此外,这种方法的有效性是作为大气环境参数(例如静态稳定性,大规模流量和耗散)的函数进行研究的。通过获取每种贡献的相对重要性,可以采用针对中尺度大气流动的特定解决方案技术。例如,当线性贡献起主导作用时,可以使用精确的分析模型,而不是依赖于数值近似求解技术。当静水作用起主导作用时,垂直温度曲线的空间变化可用于唯一定义水平压力梯度力。 [参考:21]

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