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A Sectoral Approach to Modelling Wall Heat Transfer in Exhaust Ports and Manifolds for Turbocharged Gasoline Engines

机译:涡轮增压汽油机排气口和歧管内壁传热的模型化方法

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摘要

A new approach is presented to modelling wall heat transfer in the exhaust port and manifold within 1D gas exchange simulation to ensure a precise calculation of thermal exhaust enthalpy. One of the principal characteristics of this approach is the partition of the exhaust process in a blow-down and a push-out phase. In addition to the split in two phases, the exhaust system is divided into several sections to consider changes in heat transfer characteristics downstream the exhaust valves. Principally, the convective heat transfer is described by the characteristic numbers of Nusselt, Reynolds and Prandtl. However, the phase individual correlation coefficients are derived from 3D CFD investigations of the flow in the exhaust system combined with Low-Re turbulence modelling. Furthermore, heat losses on the valve and the seat ring surfaces are considered by an empirical model approach. Since the comparison between measured and simulated exhaust temperature at turbine inlet serves as an evaluation criterion, a detailed 1D thermocouple model is implemented. Exothermic exhaust after-reactions are represented by a reduced reaction kinetics mechanism. The investigations were carried out for four TC-DI gasoline engines. The low scattering of the correlation coefficients as well as the high agreement between simulated and measured exhaust temperature verify the model quality. Overall, the new sectoral approach shows a significant improvement of wall heat flux calculation in comparison to conventional single-phase approaches from literature.
机译:提出了一种新的方法来模拟一维气体交换模拟中的排气口和歧管中的壁传热,以确保精确计算热排气焓。该方法的主要特征之一是将排气过程划分为排污和推出阶段。除了分为两个阶段之外,排气系统还分为几个部分,以考虑排气门下游传热特性的变化。对流换热主要由Nusselt,Reynolds和Prandtl的特征数来描述。但是,相位个体相关系数是通过结合Low-Re湍流建模对排气系统中的流动进行3D CFD研究得出的。此外,通过经验模型方法考虑了在阀和座圈表面上的热损失。由于在涡轮机入口处测量的排气温度与模拟的排气温度之间的比较用作评估标准,因此可实现详细的一维热电偶模型。放热的排气后反应以降低的反应动力学机制表示。对四台TC-DI汽油发动机进行了调查。相关系数的低散射以及模拟和测量的排气温度之间的较高一致性验证了模型的质量。总体而言,与文献中的传统单相方法相比,新的扇形方法显示出壁热通量计算的显着改进。

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