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Numerical simulation of hydrogen dispersion in the vicinity of a cubical building in stable stratified atmospheres

机译:稳定分层大气中立方建筑物附近氢扩散的数值模拟

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A computational fluid dynamics (CFD) approach using the standard κ - ε turbulence model was applied to simulate hydrogen and methane dispersion around a cubical building. Model results were compared against towing-tank data and other numerical results. The relative impact between hydrogen and methane releases on the building and its surroundings under several stable atmospheric stratifications was assessed. The computed dispersion patterns show a greater risk potential of hydrogen in comparison to methane when released in the vicinity of a building. However, since hydrogen rapidly rises, the impact of a release on the surrounding buildings promptly diminishes. The results also depict complex interactions of hydrogen dispersion patterns due to strong buoyant forces.
机译:应用了使用标准κ-ε湍流模型的计算流体动力学(CFD)方法来模拟立方体建筑物周围的氢气和甲烷扩散。将模型结果与拖船数据和其他数值结果进行了比较。在几个稳定的大气分层条件下,评估了氢气和甲烷释放对建筑物及其周围环境的相对影响。当在建筑物附近释放时,与甲烷相比,计算得出的分散模式显示出更大的氢气潜在风险。但是,由于氢迅速上升,因此释放对周围建筑物的影响迅速减小。结果还描绘了由于强大的浮力引起的氢分散模式的复杂相互作用。

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