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Experimental study of jet fire radiation and a new approach for optimizing the weighted multi-point source model by inverse methods

机译:喷射火辐射的实验研究及逆方法优化加权多点源模型的新方法

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摘要

The present study brings new experimental data on radiation from subsonic jet fires and proposes a new method for employing the inverse analysis technique to optimize the weighting coefficients of the multi-point model. First, detailed measurements of radiative heat flux distributions are obtained for different flame powers, injector diameters and sensor distances. All results fall onto a single curve with an adequate non-dimensionalization. A new correlation for the radiative heat transfer rate from these flames was obtained with a better performance compared to other options from literature. Then, an inverse method is employed to obtain the coefficients of the weighted multi-point model for predicting the radiative heat transfer from flames. By using the non-dimensional heat flux distributions, the inverse method became independent of the flame radiated fraction. A new optimization parameter that emerges from the non-dimensional model showed the consistency of the inverse method and leads to a correlation for the maximum heat flux as a function of the radial distance from the flame. Finally, the new weighting coefficients and the radiative heat transfer rate correlation were used to compute the dimensional radiative heat flux distributions. The comparison with the experimental data showed expressive improvements of the model prediction.
机译:本研究为来自子射流火灾的辐射带来了新的实验数据,并提出了一种采用逆分析技术来优化多点模型的加权系数的新方法。首先,为不同的火焰功率,喷射器直径和传感器距离获得辐射热通量分布的详细测量。所有结果都落在单个曲线上,具有足够的无尺寸化。与来自文献的其他选择相比,获得了来自这些火焰的辐射传热速率的新相关性。然后,采用逆方法来获得加权多点模型的系数,以预测来自火焰的辐射热传递。通过使用非尺寸热通量分布,逆方法变得独立于火焰辐射分数。从非尺寸模型中出现的新优化参数显示了逆方法的一致性,并导致最大热通量的相关性,作为径向距离火焰的径向距离。最后,使用新的加权系数和辐射传热速率相关性来计算尺寸辐射热通量分布。与实验数据的比较显示了模型预测的表现改善。

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