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Optical Diagnostics and CFD-Simulations to Support the Combustion Process Development of the Volkswagen FSI Direct-Injection Gasoline Engine

机译:光学诊断和CFD模拟,以支持大众汽车FSI直喷汽油发动机的燃烧过程开发

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From the beginning, the development of FSI direct-injection (DI) gasoline engines at Volkswagen was strictly supported by means of optical diagnostics and CFD-simulations. Basic in-cylinder phenomena, such as the formation of the flow field, the penetration of the spray formed by a hollow-cone swirl-type injector at high fuel pressure, the interaction of spray and flow and the formation of an ignitable mixture were analysed in details. The paper describes the laser-optical techniques - particle-image-velocimetry, laser-Doppler-anemometry, video-stroboscopy, high-speed filming and laser-induced fluorescence - which were used during the development of the DI gasoline combustion process. In addition, CFD simulations have been carried out simultaneously with the experiments, thus providing the engine designer with complete information about the in-cylinder processes to derive further steps of optimization. Results taken from engines with optical access to the combustion chamber demonstrate the capability of the aforementioned techniques and pinpoint where the design of the combustion process benefits from experimental and simulation investigations.
机译:从一开始,通过光学诊断和CFD模拟严格支持大众汽车直喷(DI)汽油发动机的开发。基本的圆柱状现象,如流场的形成,通过高燃料压力的空心锥旋流式喷射器形成喷雾的喷射,喷射和流动的相互作用以及形成可燃混合物的相互作用详情。本文描述了激光 - 光学技术 - 颗粒图像 - 速度,激光多普勒 - 风光测压,视频频道,高速膜,高速拍摄和激光诱导的荧光 - 在DI汽油燃烧过程的发展期间使用。另外,CFD模拟已经与实验同时进行,从而为发动机设计者提供了有关缸内过程的完整信息,从而导出进一步的优化步骤。从对燃烧室的光学接入的发动机采取的结果证明了上述技术和精确的能力,其中燃烧过程从实验和模拟调查中的益处的设计有益。

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