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OPTIMIZATION OF THE CHARGE MOTION IN INTERNAL COMBUSTION ENGINES DRIVEN BY SEWAGE GAS FOR CHP-UNITS

机译:CHP装置的排污气体驱动的内燃发动机中电荷运动的优化

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In this study, the influence of the charge motion on the internal combustion in a spark ignition sewage gas-driven engine (150 kW) for combined heat and power units was investigated. For this purpose, the geometry of the combustion chamber in the immediate vicinity to the inlet valve seats was modified. The geometrical modification measures were conducted iteratively by integrative determination of the swirl motion on a flow bench, by laser-optical methods and consecutively by combustion analysis on a test engine. Two different versions of cylinder heads were characterized by dimensionless flow and swirl numbers prior to testing their on-engine performance. Combustion analysis was conducted with a cylinder pressure indication system for partial and full load, meeting the mandatory NO_x limit of 500 mgm~(-3). Subsuming the flow bench results, the new valve seat design has a significant enhancing impact on the swirl motion but it also leads to disadvantages concerning the volumetric efficiency. A comparative consideration of the combustion rate delivers that the increased swirl motion results in a faster combustion, hence in a higher efficiency. In summary, the geometrical modifications close to the valve seat result in increased turbulence intensity. It was proven that this intensification raises the ratio of efficiency by 1.6%.
机译:在这项研究中,研究了充气运动对火花点火污水燃气驱动的发动机(150 kW)的热电联产装置内燃的影响。为此,对紧邻进气门座的燃烧室的几何形状进行了修改。通过整体确定流动工作台上的旋涡运动,采用激光光学方法并依次通过测试发动机的燃烧分析,反复进行几何修改措施。在测试发动机性能之前,两种不同版本的汽缸盖的特征在于无量纲的流量和涡旋数。使用气缸压力指示系统对部分和完全负载进行燃烧分析,以满足强制性NO_x限值500 mgm〜(-3)的要求。包括流动工作台的结果,新的阀座设计对旋流运动产生了显着增强的影响,但同时也导致了容积效率方面的弊端。燃烧速率的比较考虑提供了增加的涡旋运动导致更快的燃烧,因此具有更高的效率。总之,靠近阀座的几何形状变化会导致湍流强度增加。事实证明,这种强化使效率比提高了1.6%。

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