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On the analytical solution for two-dimensional convective plume and analytical modeling of the entrainment zone thickness

机译:在夹带区厚度二维对流羽流分析解决方案及分析模型

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Analytical solution for two-dimensional thermal plume updraft velocity is obtained under the assumption of a uniform temperature excess inside the plume. In this way, the thermal plume motion is modeled in both mixed layer and entrainment zone. Also, a semi-analytical solution is obtained using an empirical model for the plume temperature excess in the mixed layer. In addition, an analytical model for entrainment zone thickness is obtained by computing the overshoot distance of the modeled plumes, and a semi-analytical model by using the empirical model for plume temperature. By using a nonlinear profile for the lapse rate in the surface layer based on the Monin-Obukhov similarity theory, our model predicts that the characteristics of the surface layer plays an important role in the structure of the entrainment zone. Finally, our solutions for plume velocity allow us to consider the effect of the lateral entrainment on the plume excess temperature and velocity in the convective boundary layer. It is shown that the lateral entrainment has an important role on the plume dynamics and the solutions in the zero entrainment limit offer large overestimated values for the plume velocity, which also result in overestimated values of the entrainment zone thickness.
机译:在羽流内部均匀温度过量的假设下获得二维热羽毛上升速度的分析解。以这种方式,热羽运动在混合层和夹带区中建模。此外,使用混合层中的羽流温度过量的经验模型获得半分析解决方案。另外,通过使用羽流温度的经验模型计算建模羽毛的过冲距离和半分析模型来获得夹带区域厚度的分析模型。通过基于MONIN-OBUKHOV相似性理论使用用于表面层中的渗透率的非线性轮廓,我们的模型预测表面层的特性在夹带区的结构中起重要作用。最后,我们的羽流速度的解决方案允许我们考虑横向夹带对对流边界层的羽流量的过度温度和速度的影响。结果表明,横向夹带在羽流动力学中具有重要作用,零夹带限制中的解决方案提供了羽流速度的大高度垂度值,这也导致夹带区域厚度的高估值。

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