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Mixing in Wall-Jets in a Heavy-Duty Diesel Engine: A LES Study

机译:在重型柴油发动机中的墙壁喷射器中混合:LES研究

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The paper presents a large eddy simulation investigation on the effect of fuel injection pressure on mixing, in an optical heavy-duty diesel engine. Recent investigation on impinging wall jets at constant-volume and quiescent conditions exhibited augmented air entrainment in wall jets with increasing injection pressure, when compared with a free jet. The increased mixing rates were explained as owing to enhanced turbulence and vortex formation in the jet-tip in the recirculation zone. A recent investigation carried out in an optical heavy-duty diesel engine indicated however a negligible effect of injection pressure on the mixing in the engine environment. The effect of enhanced turbulence and vortex formation of the jet-tip in the recirculation zone is believed weaker than the effect of engine confinement, due to the presence of fuel from adjacent jets limiting the mixing the fuel with the ambient gas. The aims of this paper are to investigate this issue and to look into more details about the nature of the mixing process in diesel engines. Two fuel injection pressures, 2000 bar and 2500 bar for a constant swirl level of 0.5 and inter-jet angles 45° and 135° were employed. The simulations were performed using OpenFoam, accounting for the mesh-motion and fuel spray treatment. The results exhibit the same trend found in the optical experiments. It was shown that increasing the mass flow rate by increasing injection velocity resulted in augmented turbulence levels in the recirculation zone; however, nearly injection pressure independent equivalence ratio was exhibited during quasi-stationary flow conditions.
机译:本文介绍了对光学重型柴油发动机中混合燃料喷射压力效果的大型涡流模拟研究。与自由喷射相比,在恒定体积和静态条件下撞击恒定体积和静止条件下壁喷射的壁射流的研究表现出壁喷射中的增强空气夹带。由于在再循环区中喷射尖端的增强的湍流和涡流形成,解释了增加的混合速率。最近在光学重型柴油发动机中进行的最近进行的研究表明,注射压力对发动机环境中混合的效果可忽略不计。由于来自与环境气体的混合燃料的燃料的存在,因此,由于来自与环境气体的混合燃料的燃料的存在,因此越来越弱于发动机限制的射流和涡旋形成的射流形成的效果。本文的目的是调查此问题,并介绍柴油发动机混合过程的性质的更多细节。使用两个燃料喷射压力,2000巴和2500巴,用于0.5的恒定涡流和射流区45°和135°。使用OpenFoam进行模拟,占网状运动和燃料喷涂处理。结果表现出光学实验中发现的相同趋势。结果表明,通过增加注射速度提高质量流量,导致再循环区中的增强湍流水平;然而,在准静止流动条件下展出了几乎注射压力独立的等效比。

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