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A physics-based zero-dimensional model for the mass flow rate of a turbocharger compressor with uniform/distorted inlet condition

机译:具有均匀/扭曲入口的涡轮增压器压缩机质量流量的物理零维模型

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摘要

Turbocharger compressor, when fitted to a vehicle, usually operates with a curved inlet pipe which leads to distorted inlet flow field, hence deteriorating compressor flow capability. During the measurement of compressor performance, turbocharger-engine matching and controller design, the inlet flow field is, however, assumed to be uniform, which deviates from the real-world conditions. Consequently, the overall system performance could be compromised if the inlet distortion effect is ignored. To address this issue, in this article, a turbomachinery physics-based zero-dimensional model was proposed for the mass flow rate of a compressor with distorted inlet flow field due to 90 degrees and 180 degrees bent inlet pipe. The non-uniform flow is approximated as two-zone flow field, similar to parallel compressors, with the total pressure deviation between two zones modeled as a function of the flow velocity and pipe geometry. For each flow zone, the corresponding mass flow rate is estimated by approximating each sub-compressor as an adiabatic nozzle, where the fluid is driven by external work delivered by a compressor wheel governed by Euler's turbomachinery equation. By including turbomachinery physics and compressor geometry information into the modeling, the model achieves high fidelity in compressor map interpretation and extrapolation, which is validated in experiments and the three-dimensional computational fluid dynamic simulation.
机译:当安装到车辆时,涡轮增压器压缩机通常与弯曲入口管操作,这导致扭曲的入口流场,因此压缩机流动能力劣化。在压缩机性能测量期间,涡轮增压器 - 发动机匹配和控制器设计,然而,入口流场被假设是均匀的,这偏离了现实世界的条件。因此,如果忽略了入口失真效果,则可以损害整体系统性能。为了解决这个问题,在本文中,提出了一种基于涡轮机械物理的零维模型,用于由于90度和180度的弯曲入口管引起的压缩机的质量流量。非均匀流程近似为双区流场,类似于并联压缩机,其两个区域之间的总压力偏差作为流速和管几何形状建模的两个区域。对于每个流动区,通过将每个子压缩机近似作为绝热喷嘴来估计相应的质量流量,其中流体由由欧拉涡轮机构方程的压缩机管传递的外部工作驱动。通过将涡轮机械物理和压缩机几何信息纳入建模,该模型在压缩机地图解释和推断中实现了高保真,在实验和三维计算流体动态模拟中验证。

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