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Cooling System Optimization for a 3 Cylinder Naturally Aspirated Inline Diesel Engine

机译:用于3缸的冷却系统优化自然吸气的内联柴油发动机

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This paper involves increase in engine power by increasing bore size and stroke length along with other required engine level design modifications. Main focus is on addressing the cooling related issues by optimizing the cooling jacket design and water pump flow parameters. Engine cooling requirements need to be upgraded to address increase in thermal loads because of reduction in cooling area between cylinder block and cylinder liner due to increase in bore size keeping engine block size fixed. Methodology used is cooling jacket optimization and water pump design modifications. In internal combustion engines, cooling system involves a complex geometry of water jackets. For such complex systems, CFD simulations can be executed in a short period of time and are relatively inexpensive. CFD provides the ability to theoretically simulate any physical condition. Effective utilization of STAR CCM+ V8.04 is done for water jacket design of a 3 cylinder water cooled inline diesel engine. k-ε turbulence model was used for the present study. Coolant flow velocity and temperature distribution was used for study. Cylinder block and cylinder head were modeled in UG NX 7.5.
机译:本文涉及通过增加孔径和行程长度以及其他所需的发动机级设计修改来增加发动机功率。主要重点是通过优化冷却夹套设计和水泵流量参数来解决冷却相关问题。由于孔径尺寸的增加,需要升级发动机冷却要求以解决热负荷的增加,因为气缸块和气缸衬里之间的冷却面积减小,因此孔径保持尺寸固定。方法使用的方法是冷却夹套优化和水泵设计修改。在内燃机中,冷却系统涉及水套的复杂几何形状。对于这样的复杂系统,可以在短时间内执行CFD仿真,并且相对便宜。 CFD提供理论上模拟任何物理条件的能力。有效利用Star CCM + V8.04进行了用于3缸水冷式柴油发动机的水套设计。 K-ε湍流模型用于本研究。冷却剂流速和温度分布用于研究。圆柱体和气缸盖在UG NX 7.5中进行建模。

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