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IC engine supercharging and exhaust gas recirculation using jet compressor

机译:喷射压缩机用于内燃机增压和废气再循环

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Supercharging is a process which is used to improve the performance of an engine by increasing the specific power output whereas exhaust gas recirculation reduces the NOx produced by engine because of supercharging. In a conventional engine, supercharger functions as a compressor for the forced induction of the charge taking mechanical power from the engine crankshaft. In this study, supercharging is achieved using a jet compressor. In the jet compressor, the exhaust gas is used as the motive stream and the atmospheric air as the propelled stream. When high pressure motive stream from the engine exhaust is expanded in the nozzle, a low pressure is created at the nozzle exit. Due to this low pressure, atmospheric air is sucked into the expansion chamber of the compressor, where it is mixed and pressurized with the motive stream. The pressure of the mixed stream is further increased in the diverging section of the jet compressor. A percentage volume of the pressurized air mixture is then inducted back into the engine as supercharged air and the balance is let out as exhaust. This process not only saves the mechanical power required for supercharging but also dilutes the constituents of the engine exhaust gas thereby reducing the emission and the noise level generated from the engine exhaust. The geometrical design parameters of the jet compressor were obtained by solving the governing equations using the method of constant rate of momentum change. Using the theoretical design parameters of the jet compressor, a computational fluid dynamics analysis using FLUENT software was made to evaluate the performance of the jet compressor for the application of supercharging an IC engine. This evaluation turned out to be an efficient diagnostic tool for determining performance optimization and design of the jet compressor. A jet compressor was also fabricated for the application of supercharging and its performance was studied.
机译:增压是用于通过增加比功率输出来改善发动机性能的过程,而排气再循环由于增压而减少了由发动机产生的NOx。在传统的发动机中,增压器用作压缩机,用于强制感应电荷,从而从发动机曲轴获取机械动力。在这项研究中,使用喷射压缩机实现增压。在喷射压缩机中,排气用作动力流,大气用作推进流。当来自发动机排气的高压动力流在喷嘴中膨胀时,会在喷嘴出口处产生低压。由于这种低压,大气被吸入压缩机的膨胀室,在此与动力流混合并加压。混合流的压力在喷射压缩机的发散部分中进一步增加。然后将一定百分比的压缩空气混合物作为增压空气引入发动机,其余部分作为排气排出。该过程不仅节省了增压所需的机械功率,而且还稀释了发动机废气的成分,从而降低了发动机废气的排放量和噪音水平。通过采用恒定动量变化率法求解控制方程,可以得出喷气式压缩机的几何设计参数。使用喷气压缩机的理论设计参数,使用FLUENT软件进行了计算流体动力学分析,以评估用于内燃机增压的喷气压缩机的性能。该评估结果证明是确定喷射压缩机性能优化和设计的有效诊断工具。还制造了用于增压应用的喷气压缩机,并研究了其性能。

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