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Modeling flame extinction and reignition in large eddy simulations with fast chemistry

机译:快速化学在大型涡流模拟中对火焰的熄灭和重燃建模

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This work seeks to support the validation of large eddy simulation models used to simulate fire suppression. The emphasis in the present study is on the prediction of flame extinction and the prevention of spurious reignition using a fast chemistry, mixing-controlled combustion model applicable to realistic fire scenarios of engineering interest. The configuration provides a buoyant, turbulent methane diffusion flame within a controlled co-flowing oxidizer. The oxidizer allows for the supply of a mixture of air and nitrogen, including conditions for which oxygen-dilution in the oxidizer leads to flame extinction. Measurements to support model validation include local profiles of thermocouple temperature and oxygen mole fraction, global combustion efficiency, and the limiting oxygen index. The present study evaluates the performance of critical flame temperature based extinction and reignition models using the Fire Dynamics Simulator, an open-source fire dynamics solver. Alternate model cases are explored, each offering a unique treatment of extinction and reignition. Comparisons between simulated results and experimental measurements are used to evaluate the capability of these models to accurately describe flame extinction. Of the considered cases, those that include provisions to prevent spurious reignition show excellent agreement with measured data, whereas a baseline case lacking explicit reignition treatment fails to predict extinction.
机译:这项工作旨在支持用于模拟灭火的大型涡流模拟模型的验证。本研究的重点是使用适用于工程实际火情的快速化学混合控制燃烧模型,预测火焰的熄灭和防止伪点火。该构造在受控的共流式氧化剂内提供了浮力,湍流的甲烷扩散火焰。氧化剂允许提供空气和氮气的混合物,包括氧化剂中的氧气稀释导致火焰熄灭的条件。支持模型验证的测量包括热电偶温度和氧气摩尔分数的局部曲线,整体燃烧效率和极限氧气指数。本研究使用开源的火动力学求解器Fire Dynamics Simulator评估了基于临界火焰温度的熄灭和重燃模型的性能。探索了替代模型案例,每种案例都提供了独特的灭绝和重生方法。模拟结果与实验测量值之间的比较用于评估这些模型准确描述火焰熄灭的能力。在所考虑的案例中,那些包含防止虚假重燃的规定的案例与实测数据显示出极佳的一致性,而缺乏明确重燃处理的基准案例无法预测灭绝。

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