Determination of the injector type and location for a direct injected Wankel engine

Majid Javadzadehkalkhoran, Akın Kutlar, Ö. Cihan, H. Doğan
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Abstract

Direct injection on the Wankel engines has been practiced since the 1970’s. By applying direct injection in the Wankel engine, the specific fuel consumption and HC emissions, which are seen as disadvantages for this engine, might be reduced and the mixture formation is improved. In order to obtain a better mixture formation, the fuel injector must be located in a proper place and a correct direction. In addition, the most suitable injector for the engine structure should be selected. In this study, direct injection was applied for the RENESIS 13B Wankel engine and injector selection for the engine and the location of the injector on the housing were examined. In addition, the diameter of orifice and flow rate characteristics of the injector were investigated. According to the results, two types of injectors were selected. These injectors were called as low speed and high speed. An injector with a narrow nozzle angle (<30°) was used to deliver the fuel to the leading of the chamber, and the fuel injected after the intake ports closed. The orifice diameters of low-speed and high- speed injectors were measured 0.33 and 0.45 mm, respectively. In addition, both injectors have low speed rates when injection duration was below 2 ms. This flow rate was increased by providing high voltage.
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确定旺克尔直喷式发动机的喷油器类型和位置
自20世纪70年代以来,在万克尔发动机上进行了直接喷射。通过在Wankel发动机上应用直喷,可以降低该发动机的劣势——比油耗和HC排放,并改善混合气的形成。为了获得更好的混合气形成,喷油器必须位于适当的位置和正确的方向。此外,还应选择最适合发动机结构的喷油器。在本研究中,RENESIS 13B Wankel发动机采用直接喷射,并对发动机的喷油器选择和喷油器在壳体上的位置进行了检查。此外,还研究了喷油器的孔径和流量特性。根据实验结果,选择了两种类型的喷射器。这些喷射器被称为低速和高速。采用窄角喷油器(<30°)将燃油输送至燃烧室前导,进气道关闭后再进行燃油喷射。低速和高速喷油器的孔直径分别为0.33和0.45 mm。此外,当注射时间低于2 ms时,两个喷射器的速度都很低。通过提供高电压提高了流速。
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