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柴油转子发动机的全可变配气系统优化 被引量:6

Optimization of fully variable valve system in a diesel rotary engine
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摘要 柴油转子发动机作为动力源头在农业领域中被广泛运用,为使其配气端口的设计与优化向系统化发展,进一步提升转子发动机的性能,提出了配气端口参数化设计及优化方法。根据柴油转子发动机的特性,建立配气端口曲线方程,采用6个配气参数构建转子发动机全可变配气的参数化模型和一维工作过程仿真模型。采用单因素扫值和响应面法,建立了功率及燃油消耗率的回归模型。以功率和燃油消耗率为性能指标,采用NSGA-II方法对全可变配气端口系统进行了多目标优化。研究结果表明,采用单因素扫值和响应面法相结合的方法,响应面回归模型的相关性系数大于0.95,具有良好的准确性与预测性;优化后,进气端口向前移动19.21°曲轴转角(Crank Angle,CA),进气口持续期增大了78.40%,端口宽度扩大了58.89%;排气端口向后移动19.92°CA,持续期不变,端口宽度扩大了46.60%;功率增加了1.07 kW、提升了25.36%,燃油消耗率降低了104.46 g/(kW·h),降低了20.01%。该研究可为转子机配气系统的设计与优化提供参考依据。 A rotary engine has broad application prospects in the plant protection of agricultural spraying,range extenders of an electric vehicle,and generator sets,due mainly to its light weight,small size,stable operation,low noise,and excellent high-speed performance.The current capability of gas distribution has a great challenge on the power,economy,and emissions in the rotary engine.Therefore,it is necessary to systematically design and optimize the valve system of a rotary engine for better performance of gas distribution.Many previous efforts have been made on the experiments and simulation of the intake model.However,the physical experiment is time-consuming and high cost,not suitable for the systematic optimization of an engine.The traditional optimization can consider only one or two variables at the same time.Alternatively,the recent parametric modeling has achieved the functional trade-off between the model complexity and computational efficiency.In this study,a parameter design of a fully variable gas distribution port system in a rotary engine was proposed to reduce the complexity of the valve model for the accurate description of the working process of the valves.The shape curve of the valve port was selected to obtain the opening area curves of gas distribution in the rotary engine.The working process of gas distribution was constructed using parameterized arrays in a one-dimensional simulation model,thereby efficiently realizing the continuous adjustment of parameters in the gas distribution system.The parameters of valve port(advance angle deviation of intake,speed of opening area at the intake port,duration coefficient of the intake port)were used as the response surface factor,and the monitoring indicators of performance(power and fuel consumption rate)were used as the response surface response.A single factor scanning value method was used to determine the optimal range of parameters.The response surface method was selected to regress the performance of the rotary engine.Finally,multi-objective optimization was utilized to optimize the valve parameters of the rotary engine.The results showed that the maximum error for the cylinder pressure and volume change curve of simulation and experiment was within 5%,indicating a high accuracy on the fully variable gas distribution parameter model of the rotary engine.There were a high accuracy and excellent predictive ability on all the quadratic response surface regression models.The determination coefficient of models,the adjusted and prediction determination coefficients were all above 0.95.and the maximum error between the test and the predicted value was less than 2.1%,so the model has good accuracy and predictive power.After optimization,the intake port is shifted forward by 19.21°CA,increasing the duration of the intake port by 78.40%and expanding the port width by 58.89%;the exhaust port is shifted backward by 19.92°CA,with no change in duration and an increase in port width of 46.60%.The optimized overlap angle of the valve was 39.3°CA higher than that in the original machine.The engine power increased by 1.07 k W,25.36%higher than before.The fuel consumption of the engine was reduced by 104.46 g/(kW·h),20.01%lower than that of the conventional engines.The maximum error between the optimization and the simulation was within 1%,indicating a high accuracy of the optimization model.The research findings can provide insightful suggestions to optimize the performance of diesel rotary engines.
作者 邓晰文 林贤衍 贾德文 雷基林 毕玉华 Deng Xiwen;Lin Xianyan;Jia Dewen;Lei Jilin;Bi Yuhua(Yunnan Key Laboratory of Internal Combustion Engines,Kunming University of Science and Technology,Kunming 650500,China;Yunnan Key Laboratory of Internal Combustion Engines Plateau Emissions,Kunming Yunnei Power Co.,Ltd,Kunming 650200,China)
出处 《农业工程学报》 EI CAS CSCD 北大核心 2021年第4期114-121,共8页 Transactions of the Chinese Society of Agricultural Engineering
基金 国家自然科学基金项目(51805233,51965027,51665021)。
关键词 转子发动机 配气系统 多目标优化 工作过程仿真 响应面法 rotary engine valve system multi-objective optimization working processes simulation response surface method
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