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Analysis of heat transfer of spilling fire spread over steady flow of n-butanol fuel

机译:溢出火灾传热分析跨越正丁醇燃料稳定流动

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摘要

The continuously spilling n-butanol fire is systematically investigated in steady flow state. The influence of thermal conductivity of substrate on spilling fire is revealed. According to the temperature distribution and spreading characteristics, the spilling fire over concurrent steady flow n-butanol is separated into the heat transfer dominant stage in low-discharge rate and the forced flow dominant stage in high-discharge rate with the critical discharge rate Q = 141.5 ml/min. The low-discharge rate spilling fire spread depends on the coupled effects of subsurface flow preheating and intrinsic dragging of flowing fuel, whereas the high-discharge rate spilling fire depends mainly on the dragging effect of non-slip boundary condition on the liquid surface. The temperature distribution of liquid surface proves that the behavior of thermal fluid diffusion occurs in high-discharge rate. The velocity of spilling fire decreases with an increase in thermal conductivity of substrate. The magnitudes of heat transfer involving spilling fire spread over n-butanol inside the subsurface flow namely gas conduction, liquid conduction, liquid convection, sensible heat and heat dissipation from substrate and walls of spilling trench are quantitatively calculated. The sum of sensible heat and convective heat loss accounts for more than 80% of total heat flux.
机译:在稳定的流动状态下系统地研究了连续溢出的正丁醇火。揭示了基板对溢出火的热导率的影响。根据温度分布和扩散特性,通过并发稳定流动的溢出火焰在低放电速率下分离成热传递优势阶段,并以临界放电速率Q = 141.5 ml / min。低放电速率溢出的火焰传播取决于地下流动预热的耦合效应和流动燃料的内在拖动,而高放电速率溢出的火焰主要取决于防滑边界条件对液体表面的拖曳效应。液体表面的温度分布证明了热流体扩散的行为以高排出速率发生。溢出火焰的速度随着基材的导热率的增加而减小。定量地计算涉及溢出在地下流量内的正丁醇中的溢出火的传热幅度蔓延,液体传导,液体对流,从基板和溢出沟槽壁的散热。可明智的热量和对流热损失的总和占总热通量的80%以上。

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  • 来源
    《International Communications in Heat and Mass Transfer》 |2020年第7期|104685.1-104685.9|共9页
  • 作者单位

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China Anhui International Joint Research Center on Hydrogen Safety Hefei 230009 China;

    School of Civil Engineering Hefei University of Technology Hefei 230009 China;

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

    n-butanol fuel; Spilling fire; Steady flow; Subsurface flow; Heat transfer;

    机译:正丁醇燃料;洒火;稳流;地下流动;传播热量;

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