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首页> 外文期刊>International Journal of Computational Methods and Experimental Measurements >COUPLING METHOD FOR INTERNAL NOZZLE FLOW AND THE SPRAY FORMATION FOR VISCOUS LIQUIDS
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COUPLING METHOD FOR INTERNAL NOZZLE FLOW AND THE SPRAY FORMATION FOR VISCOUS LIQUIDS

机译:内喷嘴流动的耦合方法及粘性液体的喷雾形成

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Understanding the disturbances introduced by cavitation inside spray nozzles is important, when simulating the spray formation of highly viscous liquids. In this paper, a new model for cavitation-induced primary break-up is proposed, which is able to map the influence of cavitating nozzle flow on spray formation. Detailed experimental and numerical investigations of the viscous nozzle flow have been performed in order to develop an improved primary break-up model [1]. The proposed model describes the transition from the flow inside the nozzle, modelled using a homogeneous equilibrium model (HEM) method, to the first primary droplets modelled using a Eulerian-Lagrangian method. Thus, providing the boundary conditions for the calculation of the secondary break-up and spray formation. The nozzle exit is divided into a definite number of patches. Liquid momentum and vapor volume fraction from each patch are used to initialize the primary droplets. The model has been implemented in the open-source CFD software package OpenFOAM and validation has been done using high-speed shadow graphic imaging. The simulated spray tip penetration and spray cone angle at the near-nozzle region show a good agreement with the experiment results.
机译:在模拟高粘度液体的喷雾形成时,了解喷涂喷嘴内引入的扰动很重要。本文提出了一种空化诱导的初级分解模型,其能够映射空化喷嘴流对喷雾形成的影响。已经进行了粘性喷嘴流的详细实验和数值研究,以开发改进的初级分手模型[1]。所提出的模型描述了从喷嘴内部的流动的过渡,使用均匀的平衡模型(HEM)方法建模到使用Eulerian-lagrangian方法建模的第一主液滴。因此,提供用于计算二次分手和喷雾形成的边界条件。喷嘴出口分为一个明确的贴片。使用来自每种贴剂的液体动量和蒸汽体积级分来初始化初级液滴。该模型已在开源CFD软件包中实现OpenFoam和验证,使用高速影子图形成像完成。近喷嘴区域的模拟喷雾尖端穿透和喷雾锥角度显示出与实验结果的良好一致性。

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