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Large Eddy Simulation of Diesel injector including cavitation effects and correlation to erosion damage

机译:柴油机喷油器的大涡模拟,包括气蚀效应及其与腐蚀损害的关系

摘要

The present paper focuses on erosion development due to cavitation inside Diesel injectors. Two similar injector designs are discussed both in terms of numerical simulation and experimental results from X-ray CT scans. In order to capture the complex flow field and cavitation structures forming in the injector, Large Eddy Simulation along with a two phase homogenous mixture model were employed and compressibility of the liquid was included as well. During the simulation, pressure peaks have been found in areas of vapour collapse, with magnitude beyond 4000 bar, which is higher than the yield stress of common materials employed in the manufacturing of such injectors. The locations of such pressure peaks correspond well with the actual erosion locations as found from X-ray scans. The present work is the first to correlate pressure peaks due to vapour collapse with erosion development in industrial injectors with moving needle including comparison with experiments.
机译:本文主要关注由于柴油喷油器内的气蚀而引起的腐蚀发展。就数值模拟和X射线CT扫描的实验结果而言,讨论了两种相似的注射器设计。为了捕获在喷射器中形成的复杂流场和空化结构,采用了大涡模拟和两相均质混合物模型,并且还包括了液体的可压缩性。在模拟过程中,在蒸汽崩塌区域发现了压力峰值,压力峰值超过4000 bar,该压力峰值高于制造此类喷油器时所用普通材料的屈服应力。这种压力峰值的位置与从X射线扫描得出的实际腐蚀位置非常吻合。目前的工作是第一个将蒸汽崩塌造成的压力峰值与带有移动针头的工业注射器的腐蚀发展相关联的方法,包括与实验进行比较。

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