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首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >Optimization Analysis of Engine Intake System Based on Coupling Matlab-Simulink with GT-Power
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Optimization Analysis of Engine Intake System Based on Coupling Matlab-Simulink with GT-Power

机译:基于耦合MATLAB-SIMULINK与GT功率的发动机进气系统的优化分析

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In the work, the suitable volumetric efficiency is very important for the gasoline engine to achieve the aim of energy-saving and emission reduction. Thus, the intake system characteristics, such as intake manifold length, diameter, volumetric efficiency, and valve phase, should be investigated in detail. In order to investigate the performance optimization of the engine intake system, an optimization model of the engine intake system is developed by the GT-Power coupled with Matlab-Simulink and validated by the experimental results under the different conditions at full load. The engine power-, torque-, and brake-specific fuel consumption are defined as the result variables of the optimization model, and the length and diameter of the intake manifold are defined as the independent variables of the model. The results show that the length of intake manifold has little influence on the engine power and BSFC, and the length of intake manifold has a great impact on the performance index at high speed. In addition, the engine volumetric efficiency is the highest when the length of intake manifold is in the range of 240 and 250?mm. The engine BSFC improved by variable valve timing is significant compared with the original result. Finally, the improvement suggestions for the performance enhancement of the gasoline engine are proposed.
机译:在工作中,合适的体积效率对于汽油发动机来说,实现节能减排的目的非常重要。因此,应详细研究进气系统特性,例如进气歧管长度,直径,体积效率和阀阶段。为了研究发动机进气系统的性能优化,通过与MATLAB-SIMULINK耦合的GT功率开发了发动机进气系统的优化模型,并通过全负荷的不同条件下的实验结果验证。发动机功率,扭矩和制动特定的燃料消耗被定义为优化模型的结果变量,并且进气歧管的长度和直径被定义为模型的独立变量。结果表明,进气歧管的长度对发动机功率和BSFC影响几乎没有影响,并且进气歧管的长度对高速的性能指数产生了很大的影响。另外,当进气歧管的长度在240和250Ωmm的范围内时,发动机容积效率最高。与原始结果相比,通过可变气门定时改善的发动机BSFC显着。最后,提出了对汽油发动机性能增强的改进建议。

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