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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >Properties of nonturbulent round liquid jets in uniform gaseous cross flows
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Properties of nonturbulent round liquid jets in uniform gaseous cross flows

机译:均匀气态横流中非湍流圆形液体射流的特性

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摘要

A computational and experimental study of the deformation and breakup properties of nonturbulent round liquid jets in uniform gaseous cross flows is described,seeking to develop numerical predictions to find these properties at conditions that are difficult to address using experiments.The time-dependent incompressible two-dimensional Navier-Stokes equations were solved in the gas and liquid phases in conjunction with the level-set method to determine the position of the liquid-gas interface of the deforming liquid jets.The computations were evaluated satisfactorily based on earlier measurements of the properties of solid circular cylinders in cross flow (recirculating wake lengths,drag coefficients,conditions for the onset of eddy shedding,and frequencies of eddy shedding) and the present measurements of the properties of nonturbulent round liquid jets in cross flow (liquid jet cross-stream deformation,liquid jet streamwise deformation and deflection,and breakup regime transitions).Subsequent computations to find liquid jet deformation and breakup properties revealed relatively small effects of liquid-gas density and viscosity ratios on deformation and breakup regime boundaries.Small cross-flow Reynolds number conditions approaching the Stokes flow regime,however,resulted in a significant increase of the resistance of liquid jets in cross flow to deformation that has not been addressed by existing measurements of breakup properties.
机译:描述和计算了均匀湍流中非湍流圆形液体射流的变形和破裂特性的计算和实验研究,力求发展数值预测以找到在难以使用实验解决的条件下的这些特性。结合水平集方法,在气相和液相中求解了二维Navier-Stokes方程,确定了变形液体射流的液-气界面位置,并根据较早测量到的特性对计算进行了令人满意的评估横流中的实心圆柱体(再循环尾流长度,阻力系数,涡流开始的条件和涡流的频率)以及横流中非湍流圆形液体射流的特性的当前测量值(液体射流横流变形) ,液体射流的变形和挠度以及破裂状态的过渡)。随后的计算发现了液体射流的变形和破裂特性,揭示了液-气密度和粘度比对变形和破裂状态边界的影响相对较小。但是,较小的横流雷诺数条件接近斯托克斯流动状态,却导致了明显的增加。现有的破裂特性测量尚未解决液体在横流中的变形阻力。

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