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Time resolved numerical modeling of oil jet cooling of a medium duty diesel engine piston

机译:中型柴油机活塞喷油冷却的时间分辨数值模型

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In medium to heavy duty diesel engines, ever increasing power densities are threatening piston's structural integrity at high engine loads and speeds. This investigation presents the computational results of the heat transfer between piston and an impinging oil jet, typically used to keep the pistons cool. Appropriate boundary conditions are applied and using numerical modeling, heat transfer coefficient (h) at the underside of the piston is predicted. This predicted value of heat transfer coefficient significantly helps in selecting right oil (essentially right oil grade), oil jet velocity, nozzle diameter (essentially nozzle design) and distance of the nozzle from the underside of the piston. It also predicts whether the selected grade of oil will contribute to oil fumes/mist generation. Using numerical simulation (finite element method), transient temperature profiles are evaluated for varying heat flux (simulating varying engine loads) to demonstrate the effect of oil jet cooling. The model, after experimental validation, has been used to understand the transient temperature behavior of the piston and the time taken in achieving steady state. High speed CCD camera is used to investigate the oil jet breakup, localized pool boiling and mist generation due to impinging jet on the piston's underside.
机译:在中重型柴油发动机中,功率密度的不断提高正威胁着发动机在高负荷和高转速下的结构完整性。这项研究提出了通常用于保持活塞冷却的活塞与冲击喷油嘴之间的热传递的计算结果。应用适当的边界条件,并使用数值模型预测活塞底侧的传热系数(h)。该传热系数的预测值显着有助于选择正确的机油(基本上正确的机油等级),喷油速度,喷嘴直径(基本上是喷嘴设计)以及喷嘴距活塞底面的距离。它还可以预测所选等级的油是否会促进油烟/烟雾的产生。使用数值模拟(有限元方法),可以评估瞬态温度曲线的变化热通量(模拟变化的发动机负载),以证明喷油冷却的效果。经过实验验证后,该模型已用于了解活塞的瞬态温度行为以及达到稳态所需的时间。高速CCD摄像机用于研究由于射流撞击在活塞底面上而导致的射流破裂,局部池沸腾和雾产生。

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