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Computer modelling of automobile engine performance as the source of implications for automobile technology management

机译:汽车发动机性能的计算机建模作为汽车技术管理影响的根源

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The need for finding the replacement for fossil fuels causes several technical and technological problems in the engine construction as well as the fuel production and its standardisation. This particularly concerns biofuels. The variety of biological resources and possible conversion routes leads to the multiplication of fuel properties. The regional dependence of biomass resources might cause interregional incompatibility of fuels, which should be avoided. Our previous studies have shown that computer modelling is capable of providing information on the dependence of engine performance upon the type of the fuel used, also under conditions of simulation of road tests. Based on computer simulations of the given engine cycle, the impact of the use of biofuels on carbon dioxide emissions from a diesel and gasoline engine was analysed. The tested fuels were: gasoline 95, diesel, ethanol, DME dimethyl ether, and FAME fatty acid methyl esters. The differences in CO2 emissions of the tested fuels were large (up to 17%), but none of the analysed fuels exceeded the maximum emission limits allowed by legal regulations. The results of such simulations might be used for planning the development of various types of engines - possibly adjustable to fuels of various origin, as well as for planning the fuel composition assuring the best performance in a wide spectrum of engine constructions.
机译:寻找化石燃料的替代的需要导致发动机施工的几种技术和技术问题以及燃料生产及其标准化。这特别涉及生物燃料。各种生物资源和可能的转换路线导致燃料特性的乘法。生物质资源的区域依赖可能导致燃料的区域间不相容,应该避免。我们以前的研究表明,计算机建模能够提供有关发动机性能依赖性对所用燃料类型的依赖性的信息,也在道路测试的仿真条件下。基于给定发动机循环的计算机模拟,分析了生物燃料在柴油和汽油发动机上使用生物燃料对二氧化碳排放的影响。测试燃料是:汽油95,柴油,乙醇,DME二甲醚和Dame脂肪酸甲酯。测试燃料的二氧化碳排放的差异大(高达17%),但没有分析的燃料均未超过法律规定允许的最大排放限值。这种模拟的结果可用于规划各种类型的发动机的开发 - 可能可调节以燃料的各种起源,以及规划燃料组合物确保在广泛的发动机结构中的最佳性能。

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