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Uncertainty quantification analysis of RANS of spray jets

机译:喷雾喷射rans的不确定性量化分析

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Parametric uncertainty is propagated through Reynolds-averaged Navier-Stokes (RANS) computations of a prototypical acetone/air aerosol stream flowing in a dry air environment. Two parameters are considered as uncertain: the inflow velocity dissipation and a coefficient that blends the discrete random walk and the gradient-based dispersion models. A Bayesian setting is employed to represent the degree of belief about the parameters of interest in terms of probability theory, such that uncertainty is described with probability density functions. Random variables are represented by means of polynomial chaos expansions. The sensitivity of mean axial velocity and mean vapor mass fraction to the uncertain parameters is discussed.
机译:参数不确定度通过雷诺平均的Navier-Stokes(RANS)计算在干燥空气环境中流动的原型丙酮/空气气溶胶流的雷诺平均的Navier-Stokes(RAN)计算。两个参数被认为是不确定的:流入速度耗散和混合离散随机步行的系数和基于梯度的分散模型。在概率理论方面,采用贝叶斯环境来代表对概率理论的感兴趣参数的信念,使得具有概率密度函数描述不确定性。随机变量通过多项式混沌扩展表示。讨论了平均轴向速度和平均蒸汽质量分数对不确定参数的敏感性。

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