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Simplified Approach to the Prediction and Analysis of Temperature Inhomogeneity in Rapid Compression Machines

机译:快速压缩机温度不均匀性预测和分析的简化方法

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摘要

Substantial progress has been made in understanding and reducing temperature inhomogeneity in rapid compression machines (RCMs) with the help of computational modeling. To date, however, it has not been possible to investigate and map the full range of possible RCM designs, working gases, and, operating conditions. In this work,, we present a framework which simplifies the task of comprehensive and general RCM performance prediction. A set of thermophysical and geometrical parameters has been defined to characterize the design and operating conditions of a general RCM. Dimensional analysis was applied to reduce the number of variables, and a sensitivity analysis, based on computational simulations, was used to rank the dimensionless parameters and eliminate unimportant-ones. The results of this analysis show that Reynolds number,, Prandtl number, aspect ratio,: and crevice volume ratio are the most important parameters determining temperature inhomogeneity. A further set of computational simulations was conducted to predict postcompression temperature inhomogeneity over the full range of RCM design and operating parameters. These results are well-represented by a simple power-law equation that correlates a dimensionless temperature inhomogenity parameter (mass-averaged over the main chamber) as a function of postcompression time with just three parameters-Peclet number (the product of Reynolds and, Prandtl numbers), aspect ratio, and crevice volume ratio. This equation-can serve as a simple and general tool for RCM designers and users who wish to determine optimal configurations that minimize temperature inhomogeneity for combustion experiments.
机译:借助于计算建模,在理解和减少快速压缩机(RCM)中的温度不均匀性方面已取得了实质性进展。但是,到目前为止,尚不可能研究和绘制所有可能的RCM设计,工作气体和工作条件的图。在这项工作中,我们提出了一个框架,该框架简化了全面和常规RCM性能预测的任务。已经定义了一组热物理和几何参数来表征一般RCM的设计和操作条件。应用了维数分析以减少变量的数量,并基于计算模拟对灵敏度进行了分析,以对无因次参数进行排序并消除了不重要的参数。分析结果表明,雷诺数,普朗特数,长宽比,和缝隙体积比是确定温度不均匀性的最重要参数。进行了另一组计算仿真,以预测整个RCM设计和操作参数范围内的压缩后温度不均匀性。这些结果由一个简单的幂律方程很好地表示,该方程将无量纲的温度不均匀性参数(在主腔室上进行质量平均)与压缩后时间的函数相关,仅使用三个参数-Peclet数(Reynolds和Prandtl的乘积)数字),长宽比和缝隙体积比。对于希望确定最佳配置以最小化燃烧实验温度不均匀性的RCM设计人员和用户,此方程式可以用作简单通用的工具。

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  • 来源
    《Energy & fuels》 |2015年第novaadeca期|8216-8225|共10页
  • 作者单位

    Natl Univ Ireland, Mech Engn, Galway, Ireland|Natl Univ Ireland, Combust Chem Ctr, Galway, Ireland|Natl Univ Ireland, Ryan Inst Environm Marine & Energy Res, Galway, Ireland;

    Natl Univ Ireland, Mech Engn, Galway, Ireland;

    Natl Univ Ireland, Mech Engn, Galway, Ireland;

    Natl Univ Ireland, Mech Engn, Galway, Ireland;

    Natl Univ Ireland, Combust Chem Ctr, Galway, Ireland|Natl Univ Ireland, Ryan Inst Environm Marine & Energy Res, Galway, Ireland;

    Natl Univ Ireland, Mech Engn, Galway, Ireland|Natl Univ Ireland, Ryan Inst Environm Marine & Energy Res, Galway, Ireland;

    Natl Univ Ireland, Mech Engn, Galway, Ireland|Natl Univ Ireland, Combust Chem Ctr, Galway, Ireland|Natl Univ Ireland, Ryan Inst Environm Marine & Energy Res, Galway, Ireland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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