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Durability Analysis of Heavy Duty Engine Exhaust Manifold Using CFD-FE Coupling

机译:使用CFD-FE耦合的重型发动机排气歧管耐久性分析

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The exhaust manifold is one of the engine components which is used to collect the burned gases from the cylinder head and send it to the exhaust hot end aftertreatment system with low engine backpressure. The main purpose of the automotive exhaust manifolds are providing a smooth flow field and must be able to endure thermo-mechanical loadings. The present paper explains the CAE analysis method to assess the design of exhaust manifold of a heavy duty diesel engine. Coupled computational fluid dynamics (CFD) analyses were performed to solve the flow field within the exhaust system and surface convection loading prediction at fluid side and obtain temperature distribution at solid region of exhaust manifold domain. The metal temperature prediction provided by thermal model is used to carry out the durability analysis of the structure. A transient nonlinear Finite Element Analysis (FEA) is undertaken to simulate the inelastic deformation and predict thermo-mechanical fatigue (TMF) failure. Gasket sealing prediction is another analysis concern which is driven by FEA in exhaust manifolds since any gas leakage affects the engine performance. The use of such CAE approach allows the design and analyses engineers to diagnose critical locations or to find the root cause of manifold failures in an early stage of development and to meet measures in order to remove local structural weaknesses. This minimizes the need for expensive hardware testing, also reducing the overall product development cycle time and cost.
机译:排气歧管是发动机部件之一,用于从气缸盖收集燃烧的气体并用低发动机背压将其发送到排气热端后处理系统。汽车排气歧管的主要目的是提供平滑的流场,并且必须能够忍受热机械载荷。本文介绍了评估重型柴油发动机排气歧管设计的CAE分析方法。进行耦合计算流体动力学(CFD)分析以解决排气系统内的流场和流体侧的表面对流加载预测,并在排气歧管域的固体区域获得温度分布。热模型提供的金属温度预测用于执行结构的耐久性分析。进行瞬态非线性有限元分析(FEA)以模拟非弹性变形并预测热机械疲劳(TMF)失效。垫圈密封预测是另一个分析问题,因为任何气体泄漏都会影响发动机性能的任何分析歧管。这种CAE方法的使用允许设计和分析工程师来诊断关键位置或在开发的早期阶段找到歧管故障的根本原因,并满足措施以消除局部结构弱点。这最大限度地减少了对昂贵的硬件测试的需求,还降低了整体产品开发循环时间和成本。

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