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Simulation Based Development of a Valve Actuator for Alternative Drives Using BEM-FEM Code

机译:基于BEM-FEM代码的基于模拟的替代驱动阀执行器开发

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摘要

The importance of natural gas engines is increasing due to low CO$_{2}$ emissions. To optimize these engines, a direct injection valve has been developed that works with low pressure and is triggered purely electrical. The development of this valve has been supported by numerical simulations using a coupled boundary-element-method–finite-element-method (BEM-FEM) code. This paper deals with the interaction of theoretical considerations, numerical simulations, and measurements on the realized device. In order to achieve the prescribed electromagnetic forces, numerous aspects were considered. The exciting coil, the armature, and the stator geometry is of basic interest. Several concepts have been investigated. Finally, a simple but powerful concept is realized. The simulation results have been compared to measurements on the lately constructed valve.
机译:天然气发动机的重要性由于CO __ {2} $的低排放而日益增加。为了优化这些发动机,已经开发了一种直接喷射阀,该阀可在低压下工作并被纯电动方式触发。该阀门的开发得到了使用耦合边界元法-有限元法(BEM-FEM)代码的数值模拟的支持。本文讨论了理论上的考虑因素,数值模拟和实现设备上的测量之间的相互作用。为了获得规定的电磁力,考虑了许多方面。励磁线圈,电枢和定子的几何形状是最基本的。已经研究了几种概念。最后,实现了一个简单但功能强大的概念。仿真结果已与最新构造的阀门的测量结果进行了比较。

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