首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part D. Journal of Automobile Engineering >Transfer matrix measurements for studying intake wave dynamics applied to charge air coolers with experimental engine validation in the frequency domain and the time domain
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Transfer matrix measurements for studying intake wave dynamics applied to charge air coolers with experimental engine validation in the frequency domain and the time domain

机译:传递矩阵测量用于研究增压空气冷却器的进气波动力学,并在频域和时域进行实验性发动机验证

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摘要

The flows at the intake and the exhaust of an internal-combustion engine are most of the time simplified to a single space dimension, and the hyperbolic partial differential equations that govern the compressible and unsteady air flow are discretized and solved numerically. This method is the basis of today's engine simulation codes. Models for complex parts such as the charge air coolers often need calibration with experimental engine data essentially for the pressure drop coefficients and the corrected lengths. Another technique for understanding wave action inside the pipes of an internal-combustion engine is to use the reciprocating nature of the engine itself and to gain access to the frequency spectrum of the pressure and the mass flow signals. This was achieved in this paper using a dedicated dynamic bench that identifies a transfer matrix which is defined in terms of the pressure and the mass flow rate. This new transfer matrix technique permits the dynamic pressure and the mass flow to be identified under similar conditions to those encountered in an engine. The transfer matrix is measured for two charge air cooler geometries and validated using experimental engine measurements. The results and methodology are explained in the frequency domain and the time domain, and the future objectives and perspectives discussed.
机译:大部分时间,内燃机进气和排气处的气流被简化为单个空间尺寸,控制可压缩和不稳定气流的双曲偏微分方程被离散化并通过数值求解。该方法是当今发动机仿真代码的基础。诸如增压空气冷却器之类的复杂零件的模型通常需要使用实验性发动机数据进行校准,本质上是针对压降系数和校正后的长度。了解内燃机管道内部波动的另一种技术是利用发动机本身的往复运动特性,并获得压力和质量流量信号的频谱。在本文中,这是通过使用专用的动态工作台实现的,该工作台可识别根据压力和质量流率定义的传递矩阵。这种新的传递矩阵技术允许在与发动机所遇到的相似的条件下识别动压和质量流量。针对两个增压空气冷却器几何形状测量传输矩阵,并使用实验性发动机测量结果进行验证。在频域和时域中解释了结果和方法,并讨论了未来的目标和观点。

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