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首页> 外文期刊>International Journal of Heat and Mass Transfer >A kinetic model of droplet heating and evaporation: Effects of inelastic collisions and a non-unity evaporation coefficient
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A kinetic model of droplet heating and evaporation: Effects of inelastic collisions and a non-unity evaporation coefficient

机译:液滴加热和蒸发的动力学模型:非弹性碰撞和非统一蒸发系数的影响

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摘要

The previously developed kinetic model for droplet heating and evaporation into a high pressure air is generalised to take into account the combined effects of inelastic collisions between molecules in the kinetic region, a non-unity evaporation coefficient and temperature gradient inside droplets. It is pointed out that for the parameters typical for Diesel engine-like conditions, the heat flux in the kinetic region is a linear function of the vapour temperature at the outer boundary of this region, but practically does not depend on vapour density at this boundary for all models, including and not including the effects of inelastic collisions, and including and not including the effects of a non-unity evaporation coefficient. For any given temperature at the outer boundary of the kinetic region the values of the heat flux are shown to decrease with increasing numbers of internal degrees of freedom of the molecules. The rate of this decrease is strong for small numbers of these degrees of freedom but negligible when the number of these degrees exceeds 20. This allows us to restrict the analysis to the first 20 arbitrarily chosen degrees of freedom of n-dodecane molecules when considering the effects of inelastic collisions. The mass flux at this boundary decreases almost linearly with increasing vapour density at the same location for all above-mentioned models. For any given vapour density at the outer boundary of the kinetic region the values of the mass flux are smaller for the model, taking into account the contribution of internal degrees of freedom, than for the model ignoring these degrees of freedom. It is shown that the effects of inelastic collisions lead to stronger increase in the predicted droplet evaporation time in Diesel engine-like conditions relative to the hydrodynamic model, compared with the similar increase predicted by the kinetic model considering only elastic collisions. The effects of a non-unity evaporation coefficient are shown to be noticeable for gas temperatures of 1500 K. The application of the rigorous kinetic model, taking into account the effects of inelastic collisions and a non-unity evaporation coefficient, and the model taking into account the temperature gradient inside droplets, is recommended when accurate predictions of the values of droplet surface temperature and evaporation time in Diesel engine-like conditions are essential.
机译:概括了先前开发的用于液滴加热和蒸发到高压空气中的动力学模型,以考虑到动力学区域内分子之间的非弹性碰撞,液滴内部的非统一蒸发系数和温度梯度的综合影响。需要指出的是,对于类似柴油发动机工况的典型参数,动力学区域中的热通量是该区域外边界处蒸汽温度的线性函数,但实际上并不取决于该边界处的蒸汽密度对于所有模型,包括但不包括非弹性碰撞的影响,以及包括和不包括非单位蒸发系数的影响。对于动力学区域外边界处的任何给定温度,热通量的值都显示为随着分子内部自由度的增加而降低。对于少量的这些自由度,这种降低的速率很强,但是当这些自由度的数量超过20时,这种降低的速率可以忽略不计。这使得我们在考虑正十二烷分子时将分析范围限制在前20个任意选择的正十二烷分子非弹性碰撞的影响。对于所有上述模型,在同一位置的边界处的质量通量随着蒸气密度的增加几乎呈线性下降。对于动力学区域外边界处的任何给定的蒸气密度,考虑到内部自由度的影响,模型的质量通量值要小于忽略这些自由度的模型的质量通量值。结果表明,与仅考虑弹性碰撞的动力学模型所预测的类似增加相比,在类似于柴油机的条件下,非弹性碰撞的影响导致所预测的液滴蒸发时间相对于流体力学模型的增加更大。在气体温度为1500 K的情况下,非单位蒸发系数的影响显示出明显的影响。考虑到非弹性碰撞和非单位蒸发系数的影响,严格动力学模型的应用以及考虑了非单位蒸发系数的模型。当必须精确预测柴油机状条件下的液滴表面温度和蒸发时间时,建议考虑液滴内部的温度梯度。

著录项

  • 来源
  • 作者单位

    Sir Harry Ricardo Laboratories, Centre for Automotive Engineering, School of Computing, Engineering and Mathematics, Faculty of Science and Engineering, University of Brighton, Brighton, BN2 4CJ, UK;

    Sir Harry Ricardo Laboratories, Centre for Automotive Engineering, School of Computing, Engineering and Mathematics, Faculty of Science and Engineering, University of Brighton, Brighton, BN2 4CJ, UK;

    Low Temperature Department, Moscow Power Engineering Institute, Krasnokazarmennaya 14, Moscow 111250, Russia;

    Sir Harry Ricardo Laboratories, Centre for Automotive Engineering, School of Computing, Engineering and Mathematics, Faculty of Science and Engineering, University of Brighton, Brighton, BN2 4CJ, UK,King Abdullah University of Science and Technology, 4700, Thuwal 23955-6900, Saudi Arabia;

    Sir Harry Ricardo Laboratories, Centre for Automotive Engineering, School of Computing, Engineering and Mathematics, Faculty of Science and Engineering, University of Brighton, Brighton, BN2 4CJ, UK,Department of Mechanical Engineering, Universiti of Teknolo- gies, PETRONAS, Bandar Sri Iskandar, 31750 Tronoh, Perak Darul Ridzuan, Malaysia;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    droplets; heating; evaporation; kinetic modelling; inelastic collisions; N-dodecane; evaporation coefficient;

    机译:飞沫;加热;蒸发;动力学建模非弹性碰撞;正十二烷;蒸发系数;

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