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Representing Polydispersed Droplet Behavior in Nucleating Steam Flow with the Quadrature - Method - of - Moments

机译:用矩量法表征核蒸汽流中的多分散液滴行为。

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This paper applies the Quadrature-Method-of-Moments (QMOM) to the polydispersed droplets spectrums typical in low pressure steam turbines. Various modes of nonequilibrium phase transition are present in steam turbines, starting with primary and secondary homogeneous nucleation as the main source of moisture followed by heterogeneous nucleation and surface entrainment" sources. The range of phase transition possibilities leads to a wide range of droplet sizes, which are present under various combinations of inertial and thermal nonequilibrium. Given the extensive prevalence of CFD in turbomachinery design, it is of interest to develop an efficient modeling approach for polydispersed droplet flows that avoids solving an excessive number of equations to represent the droplet size distribution. Methods based on QMOM have shown promise in this regard in other applications areas of two-phase flow, and this paper attempts to quantify its potential for steam turbine applications by applying the method to supersonic nozzle studies with homogeneous and heterogeneous phase transitions.
机译:本文将矩量矩法(QMOM)应用于低压蒸汽轮机中典型的多分散液滴谱。蒸汽轮机中存在多种模式的非平衡相变,首先以一次和二次均相成核为主要水分来源,然后是异相成核和表面夹带“来源。相变可能性的范围广泛,导致了液滴尺寸的变化,鉴于在惯性和热非平衡的各种组合下存在的CFD,鉴于涡轮机械设计中CFD的普遍性,开发一种有效的多分散液滴流建模方法避免了求解过多代表液滴大小分布的方程式的兴趣。基于QMOM的方法在两相流的其他应用领域中显示出了这一前景,因此本文试图通过将该方法应用于具有均相和非均相过渡的超音速喷嘴研究中,来量化其在汽轮机应用中的潜力。

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