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Development and Application of a Quasi-3D Model for the Simulation of Radial Compressors of Turbochargers for Internal Combustion Engines

机译:拟燃动发动机涡轮增压器径向压缩机仿真模拟的开发与应用

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In this work the 3Dcell method, a quasi3D approach developed by the Internal Combustion Engine Group at Politecnico di Milano, has been extended and applied to the fluid dynamic simulation of turbocharging devices for internal combustion engines, focusing on the compressor side. The 3Dcell is based on a pseudo-staggered leapfrog method applied to the governing equation of a 1D problem arbitrarily oriented in space. The system of equations is solved referring to the relative system in the rotating zone, whereas the absolute reference system has been used elsewhere. The vaneless diffuser has been modelled resorting to the conservation of the angular momentum of the flow stream in the tangential direction, combined with the solution of the momentum equation in the radial direction. Source terms due to the presence of the centrifugal force field and its potential have been included both in the energy and momentum conservation equations to account for the interaction of the fluid with the moving blades. The model has been validated against measurements carried out on a steady state flow test bench at the University of Genoa. Once the model has been validated, a 1D use case of a turbocharged internal combustion engine has been built to evaluate the potential benefits of the approach to replace the traditional usage of 0D maps.
机译:在这项工作中,3DCell方法是由Politecnico di Milano的内燃机组开发的Quasi3d方法,并应用于内燃机的涡轮增压装置的流体动态模拟,聚焦在压缩机侧。 3DCell基于应用于在空间中任意定向的1D问题的控制方程的伪交错的跨越方法。等式系统涉及旋转区中的相对系统,而绝对参考系统已在其他地方使用。无差漫射器已经建模借助于在切线方向上的流动流的角动量的求解,与径向沿径向的动量方程的溶液结合。由于存在离心力场的存在,并且其电位在能量和动量保守方程中存在源术语,以解释流体与移动刀片的相互作用。该模型已经验证了对热那亚大学稳态流动测试台进行的测量。一旦型号经过验证,已经建立了一个涡轮增压器内燃机的1D用例,以评估替代0D地图的传统使用方法的潜在好处。

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