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Sizing of Coolant Passages in an IC Engine Using a Design of Experiments Approach

机译:使用实验方法设计IC发动机冷却剂通道的尺寸

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Determining coolant flow distribution in a topologically complex flow path for efficient heat rejection from the critical regions of the engine is a challenge. However, with the established computational methodology, thermal response of an engine (via conjugate heat transfer) can be accurately predicted [1, 2] and improved upon via Design of Experiment (DOE) study in a relatively short timeframe. This paper describes a method to effectively distribute the coolant flow in the engine coolant cavities and evenly remove the heat from various components using a novel technique of optimization based on an approximation model. The current methodology involves the usage of a sampling technique to screen the design space and generate the simulation matrix. Isight, a process automation and design exploration software, is used to set the framework of this study with the engine thermal simulation setup done in the CFD solver, STAR-CCM+. This is followed by the construction of a approximation model which aids in evaluating the interaction between the design variables (coolant passage dimensions). The methodology utilized here enables the prediction of the thermal map of the engine in the early stages of design and minimizes the need for expensive hardware testing, thus reducing the product development cycle time and cost.
机译:确定在拓扑复杂的流动路径中的冷却剂流量分布以有效地排出发动机关键区域的热量是一个挑战。但是,使用已建立的计算方法,可以通过相对较短的时间通过实验设计(DOE)研究来准确预测发动机的热响应(通过共轭传热)[1,2]并加以改进。本文介绍了一种方法,该方法可使用一种基于逼近模型的优化新技术有效地将冷却剂流分配到发动机冷却剂腔中,并从各个组件中均匀地去除热量。当前的方法涉及使用采样技术来筛选设计空间并生成仿真矩阵。 Isight是一种过程自动化和设计探索软件,用于通过CFD求解器STAR-CCM +中完成的发动机热仿真设置来设置本研究的框架。接下来是构造一个近似模型,该模型有助于评估设计变量(冷却液通道尺寸)之间的相互作用。此处使用的方法可以在设计的早期阶段预测发动机的热图,并最大程度地减少对昂贵的硬件测试的需求,从而减少产品开发周期的时间和成本。

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