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Engine Lubrication System Model for Sump Oil Temperature Prediction

机译:用于贮槽油温预测的发动机润滑系统模型

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A flow and heat transfer model of an engine lubrication system has been developed in order to predict sump oil temperature and study heat transfer mechanisms within the lubricating oil circuit. The objective was to develop the capability of simulating all the energy transfers between the oil and the combustion process, the engine coolant, and the engine bay air. The model developed in this study simulates a V8 spark-ignited engine. Included in this simulation is a bearing model for friction heat generation, a combustion heat input model, and component models for each key heat transfer site in the lubricating oil circuit. The model predicts sump oil temperatures under different engine operating conditions and simulation results were compared to test data with good agreement. The sensitivity of oil temperature to engine speed, engine load, coolant temperature, piston friction, bearing heat energy generation, piston design, water jacket depth, and oil flow rate(s) was studied. The assumptions made during modeling are discussed along with an estimate of their significance. Further, all of the significant heat transfer mechanisms in the oil circuit are discussed. This study shows that a lubricating oil circuit model is a useful tool for engine concept design, as well as providing an understanding of the mechanisms that effect sump oil temperatures.
机译:已经开发了发动机润滑系统的流动和传热模型,以预测润滑油电路内的贮槽油温和研究传热机制。目的是制定模拟油和燃烧过程,发动机冷却剂和发动机湾空气之间的所有能量转移的能力。本研究开发的模型模拟了V8火花点火发动机。该模拟中包括用于摩擦发热,燃烧热输入模型和润滑油电路中的每个键传热部位的燃烧热输入模型和部件模型的轴承模型。该模型在不同发动机运行条件下预测油底壳温度,并将仿真结果进行比较,以测试数据良好。研究了油温对发动机速度,发动机负荷,冷却剂温度,活塞摩擦,轴承热能发电,活塞设计,水套深度和石油流量的敏感性。讨论了在建模期间所做的假设以及其意义的估计。此外,讨论了油回路中的所有显着传热机制。本研究表明,润滑油电路模型是发动机概念设计的有用工具,并提供了对影响油污温度的机制的理解。

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