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Accuracy improvement in evaluation of gas explosion overpressures in congestions with safety gaps

机译:具有安全间隙的拥堵中瓦斯爆炸超压评估的准确性提高

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This paper reports a comparison of simulations and published data from experiments carried out by TNO Prins Maurits Laboratory on geometric configurations that involved safety gaps of various separation distances. The Computational Fluid Dynamics (CFD) based software - FLACS is utilized to conduct the numerical simulations. In the majority of cases, good agreement is found between the simulated results and those obtained by experiment in both the donor and acceptor modules. However, a large discrepancy in the overpressures in the acceptor module is seen when the size of the separation gap approaches one or two times of the module size. A Data-dump technique is used in this study to reset the turbulence length scale for these cases with different separation distances, five sets of explosion scenarios are then numerically simulated and the overpressures are compared with experimentally measured explosion overpressures. The overall results indicate that the software with the Data-dump technique is still an extremely effective tool when it comes to the evaluation of gas explosion overpressures in areas with large separation gaps. (C) 2014 Elsevier Ltd. All rights reserved.
机译:本文报道了TNO Prins Maurits实验室在涉及不同间距安全间隙的几何构型上进行的仿真和公开数据比较的比较。基于计算流体动力学(CFD)的软件-FLACS用于进行数值模拟。在大多数情况下,在供体和受体模块中模拟结果与通过实验获得的结果之间找到了很好的一致性。但是,当分离间隙的尺寸接近模块尺寸的一倍或两倍时,可以看到受体模块中的超压差异很大。在这项研究中,使用了数据转储技术来重置这些间隔距离不同的情况下的湍流长度尺度,然后对五组爆炸场景进行数值模拟,并将超压与实验测量的爆炸超压进行比较。总体结果表明,使用数据转储技术的软件在评估具有较大分离间隙的区域中的气体爆炸超压时仍然是非常有效的工具。 (C)2014 Elsevier Ltd.保留所有权利。

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