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RESEARCH AND DEVELOPMENT OF DOUBLE SWIRL COMBUSTION SYSTEM FOR A Dl DIESEL ENGINE

机译:Dl柴油机双旋流燃烧系统的研究与开发

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摘要

In order to make full use of the air in the chamber, improve the mixing process, and reduce raw emissions and fuel consumption ofdiesel engine, we introduce the the concept of a new combustion system-the Double Swirl Combustion System (DSCS)-and introduce their hypothesis regarding the fuel-air mixing mechanism under DSCS. For validating the hypothesis, we made a series of actual diesel engine tests on DSCS. The engine tests were based on a 150-mm diesel engine, and both single-cylinder and multicylinder engines were tested under natural aspirated intake condition and boost intake condition. The results indicate that DSCS is suitable for improving a big bore diesel engine. Later, we made a series of spray experimental researches in order to investigate DSCS and whether it can be used under different load conditions. In addition, we investigated how the structural parameters of the DS chamber affect the fuel-air mixing process in order to establish an optimum design method of the DS chamber. In order to verify whether DSCS can be used in different types of diesel engines, we made a series of engine tests on a 132-mm diesel engine. Results indicated that DSCS also can present a wonderful performance on medium bore diesel engine. For phenomena of ISO- and 132-mm diesel engines' performance by matched DSCS, we suppose there exists necessary to make a further research on DSCS from the microcosmic level. Therefore, we made a series of simulations on 132-mm DS and the 132-mm original chambers. From the simulation results, they obtained meaningful results from the velocity field and temperature distribution comparisons. The results we obtained validate that DSCS has many advantages, such as a diesel engine with an ideal heat release rate, a better fuel economy, a lower emission, and a lower thermal load, all showing potential and a bright future for DSCS owing to the wide application of electronic-controlled fuel injection systems.
机译:为了充分利用燃烧室内的空气,改善混合过程,减少柴油机的原始排放和燃料消耗,我们介绍了一种新型燃烧系统的概念-双旋流燃烧系统(DSCS),并介绍了他们关于DSCS下的燃料-空气混合机制的假设。为了验证该假设,我们在DSCS上进行了一系列实际的柴油发动机测试。发动机测试基于150毫米柴油发动机,并且在自然吸气进气条件和增压进气条件下对单缸和多缸发动机进行了测试。结果表明,DSCS适合于大口径柴油机的改进。之后,我们进行了一系列喷雾实验研究,以研究DSCS以及它是否可以在不同的负载条件下使用。此外,我们研究了DS室的结构参数如何影响燃料-空气混合过程,以建立DS室的最佳设计方法。为了验证DSCS是否可用于不同类型的柴油发动机,我们对132毫米柴油发动机进行了一系列发动机测试。结果表明,DSCS在中口径柴油机上也具有出色的性能。对于通过匹配DSCS进行的ISO和132毫米柴油发动机性能现象的研究,我们认为有必要从微观层面对DSCS进行进一步的研究。因此,我们对132毫米DS和132毫米原始腔室进行了一系列模拟。从仿真结果中,他们从速度场和温度分布比较中获得了有意义的结果。我们获得的结果证明,DSCS具有许多优势,例如具有理想的放热率,更好的燃油经济性,更低的排放量和更低的热负荷的柴油发动机,这些都显示了DSCS的潜力和光明的前景,因为电控燃油喷射系统的广泛应用。

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  • 来源
    《Combustion Science and Technology》 |2010年第9期|p.1029-1049|共21页
  • 作者单位

    School of Mechanical and Vehicular, Beijing Institute of Technology, Beijing, China;

    rnSchool of Mechanical and Vehicular, Beijing Institute of Technology, Beijing, China 5 South Zhongguancun Street, Haidian District, Beijing 100081, P.R. China;

    rnSchool of Mechanical and Vehicular, Beijing Institute of Technology, Beijing, China;

    rnSchool of Mechanical and Vehicular, Beijing Institute of Technology, Beijing, China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    diesel combustion; diesel engine; DSCS; fuel spray; piston bowl;

    机译:柴油燃烧;柴油发动机;DSCS;燃油喷雾活塞碗;

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