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Quantitative Analysis on Cycle Fuel Injection Quantity Fluctuation of Diesel Engine Electronic In-line Pump System

机译:柴油机电子在线泵系统循环燃料喷射量波动的定量分析

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A new fuel injection equipment, the Electronic In-line Pump (EIP) system has been developed in this paper, in order to meet The China's PHASE III and - emission legislations. The EIP is a product which is assembled together by mechanical hydraulic and electrical magnetic system, and it includes electronic magnetic pump and electronic magnetic injector. The fluctuation in cycle fuel injection quantity (CFIQ) influences not only on the coherence of the product performance, but also on the quality qualification rate of the product. A numerical model of the EIP system was built in the AMESim environment for the purpose of creating a design tool for engine application and system optimization. The model was used to predict key injection characteristics, i.e., injection pressure, injection rate, injection duration at different operating conditions, etc. To validate these predictions, experimental tests were conducted at the same model conditions. The results are quite encouraging, and in agreement with model predictions. The influence of the parameters such as fluctuation of supply fuel pressure, cam velocity, plunger matching clearance, peak control current, anchor residual clearance, valve matching clearance, valve lift, injector opening pressure, nozzle flow coefficient, injector needle lift, etc on cycle fuel injection quantity fluctuation (CFIQF) has been analyzed in detail by the AMESim simulation model. The quantitative percentage index of the influence of different parameters on CFIQF, namely, the influence percentage of injector characteristic parameters are from 44% to 34%, valve characteristic parameters are from 20% to 35%, plunger characteristic parameters are from 32% to 19%, and low pressure supply fuel characteristic parameters are from 4% to 12% with the cam rotate speed from 500 r/min to 1300 r/min. Based on the design of experiment (DOE) method, take the interaction into consideration, system model has been built in the Modeling and design environment "MODDE", the correlations of CFIQ and different factors have been analyzed and the correlation coefficients of CFIQ and different factors are obtained. The result shows that correlation not only exists between the single factor of parameter and CFIQ, also exists between interaction factor of parameter and CFIQ.
机译:本文开发了一种新型燃料喷射设备,电子在线泵(EIP)系统,以满足中国第三阶段和排放法规。 EIP是由机械液压和电磁系统组装在一起的产品,并且它包括电子磁泵和电子磁性喷射器。循环燃料喷射量(CFIQ)的波动不仅影响了产品性能的连贯性,还影响了产品的质量资格率。 EIP系统的数值模型是在AMESIM环境中建立的,以创建发动机应用程序和系统优化的设计工具。该模型用于预测键注射特性,即注射压力,注射速率,在不同操作条件下的注射持续时间等,以验证这些预测,在相同的模型条件下进行实验测试。结果非常令人鼓舞,并与模型预测一致。供应燃料压力波动,凸轮速度,柱塞匹配间隙,峰值控制电流,锚固剩余间隙,阀门匹配,喷射器开启压力,喷嘴流量系数,喷射器针升力等参数的影响通过Amesim仿真模型详细分析了燃料喷射量波动(CFIQF)。不同参数对CFIQF的影响的定量百分比指数,即注射器特性参数的影响百分比为44%至34%,阀特性参数为20%至35%,柱塞特性参数为32%至19 %,低压供应燃料特性参数为4%至12%,凸轮旋转速度从500 r / min到1300 r / min。基于实验(DOE)方法的设计,采取互动考虑,系统模型已经内置于建模和设计环境“Modde”,已经分析了CFIQ和不同因素的相关性和CFIQ的相关系数和不同的系数获得因素。结果表明,不仅存在于参数和CFIQ的单个因素之间的相关性,也存在参数和CFIQ的交互因子之间。

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