共查询到18条相似文献,搜索用时 328 毫秒
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针对电控EGR控制策略,结合电控系统模块化的设计思路,设计了基于Ascet平台的电控发动机EGR控制系统。通过对转速、油量等参数进行标定,运用Ascet软件实现了EGR控制模型的模拟仿真,保证了系统稳定性及可靠性,加快了EGR系统的响应速度,实现了对排气再循环系统的闭环控制。将调试好的EGR电控系统安装在高压共轨柴油机上,在标定转速3 600 r/min下进行试验,试验结果表明,EGR控制系统能够按照控制策略实现对EGR的精确控制,与原机相比,NOx排放下降明显。 相似文献
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Variable valve timing (VVT) and cylinder deactivation (CDA) are promising methods in reducing fuel consumption and emission at part load in SI engines. An SI engine which uses electromagnetic valvetrain (EMV) will eliminate flow restriction from the throttle valve and produce higher indicated mean efficiency pressure (IMEP) due to the disabling of some of the working cylinders at part load. Therefore, pumping loss can be significantly reduced at part-load conditions. In addition, duration and timing of valve events are variably controlled at different operating conditions. This contributes to the improvement of engine efficiency. In this study, a dynamic model of an unthrottled SI engine has been developed to simulate the engine cycle. The model uses an EMV system that allows valvetrain control and cylinder deactivation techniques to be carried out in simulation flexibly. The simulated results find the optimal valve timing for different engine speeds. The optimal timing of intake valve closing depends on engine speed linearly, while the intake valve opening insignificantly influences engine performance. Additionally, this study also shows that cylinder deactivation modes can be successfully applied in improving engine efficiency at different engine loads. Different cylinder deactivation strategies have been applied for the full range of engine loads. It is concluded that the two-cylinder deactivation mode (50% CDA) considerably improves fuel consumption at low engine load. Meanwhile, one-cylinder deactivation (25% CDA) is an optimal fuel economy mode at medium engine load. With proper uses of VVT and CDA strategies, the efficiency of an SI engine can be increased more than 30% at low engine load and 11.7 % at medium engine load. 相似文献
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车用发动机润滑系统最低润滑油供给量研究 总被引:1,自引:0,他引:1
以某1.8VVT发动机为研究对象,建立了发动机润滑系统计算模型和轴承动力学模型,对主油道压力、轴承处润滑油流量、轴承轴心轨迹、最小油膜厚度等参数进行了计算分析。通过计算轴承、凸轮和VVT系统等润滑系统关键部件的润滑油压力需求,获得了润滑系统在不同发动机转速下的最低润滑油压力,该计算结果可为润滑系统设计提供理论依据和边界条件。仿真计算结果表明:发动机润滑系统进油压力对轴承润滑的最小油膜厚度基本没有影响;原润滑系统供给润滑油的液压功率实测值超出理论需求值,最高可达72%,原润滑系统存在发动机中高转速工况下供油过量的问题。 相似文献