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首页> 外文期刊>Atomization and Sprays: Journal of the International Institutes for Liquid Atomization and Spray Systems >PREDICTION OF SIZE AND VELOCITY DISTRIBUTIONS IN SPRAYS FORMED BY THE BREAKUP OF PLANAR LIQUID SHEETS USING MAXIMUM ENTROPY FORMALISM
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PREDICTION OF SIZE AND VELOCITY DISTRIBUTIONS IN SPRAYS FORMED BY THE BREAKUP OF PLANAR LIQUID SHEETS USING MAXIMUM ENTROPY FORMALISM

机译:利用最大熵范式预测平面液体片破裂所形成的喷雾中的粒径和速度分布

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摘要

A predictive model for size and velocity distributions of droplets in a liquid spray from the disintegration of a planar sheet has been proposed, based on the maximum entropy formulation (MEF) principle. The conservation laws of mass, momentum, and energy over the breakup region serve as the constraint conditions in the MEF model. The liquid sheet breakup length, evaluated from the nonlinear stability analysis of planar liquid sheet, is used to evaluate the momentum and energy exchange terms in the conservation equations. The mass mean diameter is calculated from the breakup of cylindrical ligaments using the deformed interface profile at the time of breakup. The simulated results of the droplet size distribution are compared with the results published in the literature and reasonable agreement is observed at different conditions. The investigation has brought out the effects of gas-to-liquid velocity ratio, gas-to-liquid density ratio, and 'Weber number on the droplet size and velocity distributions in the liquid spray.
机译:基于最大熵公式(MEF)原理,提出了一种基于平面片解体的液体喷雾中液滴尺寸和速度分布的预测模型。分解区域上的质量,动量和能量守恒定律是MEF模型的约束条件。根据平面液体板的非线性稳定性分析评估的液体板破裂长度,用于评估守恒方程中的动量和能量交换项。质量平均直径是由圆柱状韧带的断裂,在断裂时使用变形的界面轮廓来计算的。将液滴尺寸分布的模拟结果与文献中公布的结果进行比较,并在不同条件下观察到合理的一致性。研究得出了气液速度比,气液密度比和韦伯数对液体喷雾中液滴尺寸和速度分布的影响。

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