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A Detailed Computational Analysis of Cavitating and Non-Cavitating High Pressure Diesel Injectors

机译:空化和非空化高压柴油喷射器的详细计算分析

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Demands for higher power engines have led to higher pressures in fuel injectors. Internal nozzle flow plays a critical role in the near nozzle flow and subsequent spray pattern. The internal flow becomes more difficult to model when the injector pressure and internal shape make it more prone to cavitation. Two Bosch injectors, proposed for experimental and computational studies under the Engine Combustion Network (namely “Spray C” and “Spray D”) are modeled in the computational fluid dynamics code ANSYS Fluent. Both injectors operate with n-dodecane as fuel at 150 MPa inlet pressures. The computational model includes cavitation effects to characterize any cavitating regions. Including compressibility of both liquid and vapor is found to be critical. Also, due to high velocity gradients and stresses in the nozzle, turbulent viscous energy dissipation is considered along with pressure work resulting from significant pressure changes in the injector. Results are compared against available experimental data and demonstrate that Spray C has a cavitating zone along the nozzle wall whereas Spray D is noncavitating. The influences of fluid compressibility, liquid and vapor property implementations, and inclusion of energy solution are shown to be important for the internal flow as well as nozzle exit flow with direct impact on atomization and spray pattern. Finally, the two injectors are compared to examine the influences of fuel vapor formation due to cavitation on important quantities at the nozzle outlet.
机译:对更高动力发动机的需求导致燃料喷射器的压力更高。内部喷嘴流在近喷嘴流动和随后的喷雾模式中起着关键作用。当喷射器压力和内部形状使其更容易吸入时,内部流动变得更加难以模拟。两个博世喷射器提出用于发动机燃烧网络下的实验和计算研究(即“喷雾C”和“喷雾D”)在计算流体动力学代码ANSYS流畅中建模。两个喷射器在150MPa入口压力下用N-十二烷作为燃料操作。计算模型包括浮雕效果,以表征任何空化区域。发现包括液体和蒸气的可压缩性至关重要。而且,由于喷嘴中的高速梯度和应力,由于喷射器中的显着压力变化而被认为是湍流的粘性能量耗散。将结果与可用的实验数据进行比较,并证明喷雾C沿喷嘴壁具有空化区,而喷雾D是非舒适的。流体可压缩性,液体和蒸汽性能的影响以及包含能量溶液的含义对于内部流量以及喷嘴出口流动对雾化和喷雾图案的直接影响很重要。最后,将两个注射器进行比较,以检查燃料蒸汽形成对喷嘴出口的重要数量的影响。

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