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Spatial and radiative properties of an open-flame hydrogen plume

机译:明火氢羽的空间和辐射特性

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Considerable effort is being directed toward updating safety codes and standards in preparation for production, distribution, and retail of hydrogen as a consumer energy source. In the present study, measurements were performed in large-scale, vertical flames to characterize the dimensional and radiative properties of an ignited hydrogen jet. These data are relevant to the safety scenario of a sudden leak in a high-pressure hydrogen containment vessel. Specifically, the data will provide a technological basis for determining hazardous length scales associated with unintended releases at hydrogen storage and distribution centers. Visible and infrared video and ultraviolet flame luminescence imaging were used to evaluate flame length, diameter and structure. Radiometer measurements allowed determination of the radiant heat flux from the flame. The results show that flame length increases with total jet mass flow rate and jet nozzle diameter. When plotted as a function of Froude number, which measures the relative importance of jet momentum and buoyancy, the measured flame lengths for a range of operating conditions collapse onto the same curve. Good comparison with hydrocarbon jet flame lengths is found, demonstrating that the non-dimensional correlations are valid for a variety of fuel types. The radiative heat flux measurements for hydrogen flames show good agreement with non-dimensional correlations and scaling laws developed for a range of fuels and flame conditions. This result verifies that such correlations can be used to predict radiative heat flux from a wide variety of hydrogen flames and establishes a basis for predicting a priori the characteristics of flames resulting from accidental releases.
机译:在准备生产,分配和零售氢作为消费能源方面,人们已付出相当大的努力来更新安全规范和标准。在本研究中,测量是在大型垂直火焰中进行的,以表征点燃的氢气射流的尺寸和辐射特性。这些数据与高压氢安全壳突然泄漏的安全情况有关。具体而言,这些数据将为确定与氢气存储和分配中心意外释放相关的危险长度等级提供技术依据。使用可见光和红外视频以及紫外火焰发光成像来评估火焰的长度,直径和结构。辐射计的测量可以确定火焰的辐射热通量。结果表明,火焰长度随总射流质量流量和射流喷嘴直径的增加而增加。当将其作为反映射流动量和浮力的相对重要性的弗洛德数的函数作图时,在一定范围的工作条件下测得的火焰长度会落在同一条曲线上。发现与碳氢化合物射流的火焰长度有很好的比较,表明无量纲相关性对于多种燃料类型都是有效的。氢火焰的辐射热通量测量结果与针对多种燃料和火焰条件开发的无量纲相关性和比例定律具有很好的一致性。该结果验证了这种相关性可用于预测来自多种氢火焰的辐射热通量,并为预测因意外释放而导致的火焰特性的先验性奠定了基础。

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