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Prediction of fire growth on furniture using CFD.

机译:使用CFD预测家具的火势增长。

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摘要

A fire growth calculation method has been developed that couples a computational fluid dynamics (CFD) model with bench scale cone calorimeter test data for predicting the rate of flame spread on compartment contents such as furniture. The commercial CFD code TASCflow has been applied to solve time averaged conservation equations using an algebraic multigrid solver with mass weighted skewed upstream differencing for advection. Closure models include k-e for turbulence, eddy breakup for combustion following a single step irreversible reaction with Arrhenius rate constant, finite difference radiation transfer, and conjugate heat transfer. Radiation properties are determined from concentrations of soot, CO2 and H2O using the narrow band model of Grosshandler and exponential wide band curve fit model of Modak. The growth in pyrolyzing area is predicted by treating flame spread as a series of piloted ignitions based on coupled gas-fluid boundary conditions. The mass loss rate from a given surface element follows the bench scale test data for input to the combustion prediction. The fire growth model has been tested against foam-fabric mattresses and chairs burned in the furniture calorimeter. In general, agreement between model and experiment for peak heat release rate (HRR), time to peak HRR, and total energy lost is within +/-20%. Used as a proxy for the flame spread velocity, the slope of the HRR curve predicted by model agreed with experiment within +/-20% for all but one case.
机译:已经开发了一种火灾增长计算方法,该方法将计算流体力学(CFD)模型与台式量热计测试数据相结合,以预测火焰在家具等舱内物品上的扩散速率。商业CFD代码TASCflow已用于使用代数多网格求解器求解时间平均守恒方程,该方程具有质量加权偏斜上游差分对流。闭合模型包括湍流的k-e,与Arrhenius速率常数的一步不可逆反应,有限差分辐射传递和共轭传热的单步不可逆反应后燃烧的涡流分解。使用Grosshandler的窄带模型和Modak的指数宽带曲线拟合模型,根据烟灰,CO2和H2O的浓度确定辐射特性。通过基于耦合气体-流体边界条件将火焰传播视为一系列引燃,来预测热解区域的增长。给定表面元素的质量损失率遵循台式试验数据输入燃烧预测。火焰增长模型已经针对家具热量计中燃烧的泡沫织物床垫和椅子进行了测试。通常,模型与实验之间的峰值放热率(HRR),达到峰值HRR的时间以及总能量损失之间的一致性在+/- 20%之内。作为火焰传播速度的替代,除一种情况外,模型预测的HRR曲线的斜率与实验一致,在+/- 20%之内。

著录项

  • 作者

    Pehrson, Richard David.;

  • 作者单位

    Worcester Polytechnic Institute.;

  • 授予单位 Worcester Polytechnic Institute.;
  • 学科 Engineering Mechanical.; Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 296 p.
  • 总页数 296
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;等离子体物理学;
  • 关键词

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