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Dispersion and catalytic ignition of hydrogen leaks within enclosed spaces

机译:密闭空间内氢气泄漏的扩散和催化点火

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An experimental investigation is conducted into the nature of catalytic ignition of leaked hydrogen gas within an enclosure, and the nature of hydrogen dispersion under varied venting conditions. Using a l/16th linear scale two-car garage as a model, and a platinum foil as a catalytic surface, it is found that for all conditions tested, catalytic ignition is observed after the leaked hydrogen comes in contact with the catalytic surface, which is initially at or near room temperature. After ignition, these surface reactions lead to steady-state surface temperatures in the range of 600-800 K, dependent on inlet conditions in terms of mixture composition and flow rate. In addition, varying the venting opportunities from the garage walls suggests that not only total area, but also the number and position of vents may impact the nature of hydrogen accumulation within an enclosed structure.
机译:对外壳内泄漏的氢气进行催化点火的性质以及在不同排气条件下氢的分散性质进行了实验研究。使用al / 16th线性比例两辆车的车库作为模型,并以铂箔作为催化表面,发现在所有测试条件下,泄漏的氢气与催化表面接触后都观察到催化点火。最初处于室温或接近室温。点火后,这些表面反应会导致稳态表面温度在600-800 K范围内,具体取决于混合物成分和流速方面的入口条件。另外,改变车库壁的排气机会表明,不仅总面积,而且排气孔的数量和位置都可能影响封闭结构内氢积累的性质。

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