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Inverted Brayton Cycle Employment for a Highly Downsized Turbocharged Gasoline Engine

机译:倒置布雷顿循环就业,适用于高度缩小的涡轮增压汽油发动机

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The study presented in this paper aims to evaluate the performance of a new conceptual combined power system composed of a turbocharged engine and an inverted Brayton cycle (IBC). A validated 1D model of a downsized SI engine has been built in GT-power as the baseline model to quantify the performance improvement due to introducing the inverted Brayton cycle. The results show that a system performance improvement caused by adopting IBC is expected depended on the engine load, IBC turbomachinery efficiency and the bottoming expansion ratio. The maximum thermal efficiency of the combined system is achieved when both the wastegates of turbocharger and IBC turbines are closed, which is up to 6.15 percent point.
机译:本文提出的这项研究旨在评估由涡轮增压发动机和倒置布雷顿循环(IBC)组成的新概念组合电力系统的性能。验证的SI发动机的验证的1D模型已经内置于GT-Power作为基线模型,以量化由于引入倒置Brayton循环而导致的性能改进。结果表明,采用IBC引起的系统性能改进预计取决于发动机负荷,IBC涡轮机械效率和底部膨胀比。当涡轮增压器和IBC涡轮机的污垢闭合时,实现了组合系统的最大热效率,这是高达6.15%的点。

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