论文标题
非传统科里奥利术语对ITCZ构成的大规模流的线性效应
Linear effects of the nontraditional Coriolis terms on ITCZ-forced large-scale flow
论文作者
论文摘要
本文促进了通过在区域动量方程中缩放非传统的科里奥利术语(NCT)来验证静液压近似的度量。为了证明规模,这项研究模拟了使用线性化的强制性模型模仿中的高度热源,模仿了热带收敛区(ITCZ)。该模型求解了两个相似的方程,唯一的区别是NCT的包含。该方程是使用以下近似值得出的:无弹性,赤道β平面,线性化,层次对称,稳定和恒定耗散系数。根据子午 - 垂直循环,区域风和潜在温度比较了模拟有或没有NCT的大规模流量。两种结果看起来都像哈德利循环。通过控制模型参数,由于省略了NCT,因此没有NCT的NCT减去NCT的结果是线性偏差。最突出的偏见是ITCZ加热区域中的西风偏见,因为在存在加热引起的垂直运动时,省略NCT会阻止相关的向西加速。 Zonal风偏差除以NCT的区域风为0.120 $ \ pm $ $ 0.007,而对于根平方(RMS)而言,当规定的ITCZ Mimics Mimics Mimics MIMICS OVED ITCZ 5月份在东部太平洋上时,均方根(RMS)的0.0452 $ \ pm $ 0.0005。这些标准化的纬向风偏差度量随着较窄的ITCZ或ITCZ的距离增加,因为较弱的亚热带喷射流具有相同的垂直加热剖面。可以通过非量级参数缩放NCT与传统科里奥利项的比例来追溯这种差异。缩放鼓励将NCT恢复为全球模型。
This paper promotes a measure to validate the hydrostatic approximation via scaling the nontraditional Coriolis term (NCT) in the zonal momentum equation. To demonstrate the scaling, this study simulates large-scale flow forced by a prescribed heat source mimicking the intertropical convergence zone (ITCZ) using a linearized forced-dissipative model. The model solves two similar equations between which the only difference is inclusion of NCTs. The equations are derived using the following approximations: anelastic, equatorial beta-plane, linearized, zonally symmetric, steady, and a constant dissipation coefficient. The large-scale flows simulated with and without NCTs are compared in terms of the meridional-vertical circulation, the zonal wind, and the potential temperature. Both results appear like the Hadley circulation. With the model parameters controlled, the results without NCTs minus with NCTs are linear biases due to omitting NCTs. The most prominent bias is a westerly wind bias in the ITCZ heating region that emerges because omitting NCTs prevents the associated westward acceleration when heating-induced vertical motion is present. The zonal wind bias divided by the zonal wind with NCTs is 0.120 $\pm$ 0.007 in terms of the westerly maximum and 0.0452 $\pm$ 0.0005 in terms of the root mean square (RMS) when the prescribed ITCZ mimics the observed ITCZ in May over the East Pacific. These normalized measures of the zonal wind bias increase with a narrower ITCZ or an ITCZ closer to the equator because of a weaker subtropical jet stream given the same vertical heating profile. This difference can be traced by a nondimensional parameter scaling the ratio of the NCT to the traditional Coriolis term. The scaling encourages restoring NCTs into global models.