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Improving the energy efficiency of a piston engine based on the use of a numerical method for forming the laws of motion of gas distribution valves

机译:基于使用用于形成气体分配阀运动规律的数值方法来提高活塞发动机的能效

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The increase in the power, economic and environmental performance of modern internal combustion engines is largely due to the improvement of the system that controls the gas exchange processes. Its characteristics determine the quality of filling and cleaning of the cylinders in various operating modes, the loss of power for gas exchange and, consequently, the indicator and effective indicators of the engine. The issues of mathematical modeling of gas exchange processes in combination with the study and improvement of the gas distribution mechanism are considered. The results of experimental and computational studies of gas exchange of tractor diesel are presented. Reserves for improving the gas exchange and the engine as a whole are identified based on the choice of optimal valve timing phases and valve motion laws. They provide a reduction in the modulus of the average pressure of the pump passages in the range of operating modes by 12 - 14 %, which contributed to a decrease in the specific effective fuel consumption by 1.4 ÷ 2.2 g/kWh. The above allows us to conclude that the use of a generalized step-by-step numerical method for synthesizing the law of motion of a pusher with an upper stand allows us to obtain the maximum efficiency characteristics of the gas distribution in the presence of a number of restrictions.
机译:在功率的增加,现代内燃机的经济性和环保性能,主要是由于该系统控制气体交换过程的改进。其特性确定填充和在各种操作模式清洗气缸的质量,功率的气体交换的损失,因此,在发动机的指示器和有效的指标。在学习和配气机构的改进组合气体交换过程的数学模型的问题考虑。实验和拖拉机柴油气体交换的计算研究的结果。用于改善气体交换和发动机作为一个整体储量被识别基于最优气门正时的相位和阀运动规律的选择。它们提供了通过12在操作模式的范围的泵通道的平均压力的模量降低 - 14%,其中1.4÷为2.2g /千瓦时促成了特定的有效燃料消耗的降低。上述允许我们得出结论,用于与上支架合成推动器的运动规律使用广义一步一步数值方法使我们能够获得在多个存在的气体分布的最大效率特性的限制。

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