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Accounting for the effects of buoyancy on the turbulent scalar fluxes

机译:核对浮力对动荡标量势态的影响

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摘要

The paper reports on the development of an explicit, algebraic model for the turbulent scalar fluxes which properly reflects the dependence of these fluxes on the gradients of mean velocity and on gravitational acceleration. Such dependencies are required by the exact equations governing the conservation of the turbulent fluxes but are absent from models which are based on the notion of eddy diffusivity and constant Prandtl or Schmidt number. In the present contribution, tensor representation theory is used to express the scalar fluxes in terms of its vector and tensor dependencies and then by applying a few assumptions to arrive at a model that includes the proper dependencies while being sufficiently compact and robust to be of use in practical applications. Model calibration was accomplished by reference solely to data from Large-Eddy Simulations of homogeneous turbulence in neutral and stable stratification while model performance was assessed by comparisons with experimental data from two-dimensional heated plane and free jets and buoyant plumes. In all cases, the model's performance was found to be better than an alternative implicit algebraic model, and on par with that of a differential scalar-flux transport closure.
机译:本文报告了对湍流标量助熔剂的显式,代数模型的开发,该模型适当地反映了这些通量对平均速度和引力加速度的梯度的依赖性。这种依赖性是由控制湍流通量的保护而是从基于涡流扩散率和恒定普朗特数量的概念的模型中不存在的精确方程。在目前的贡献中,张量表示理论用于根据其向量和张量依赖性来表达标量通量,然后通过应用一些假设来到达包括适当依赖性的模型,同时足够紧凑且鲁棒用于使用。在实际应用中。通过仅引用来自中性和稳定分层的大涡流模拟的数据来完成模型校准,而通过与来自二维加热平面和自由喷射的实验数据和自由喷射和浮气羽毛的实验数据进行评估。在所有情况下,该模型的性能被发现比替代隐式代数模型更好,并且与差分标量通量运输闭合的替代。

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