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Hydrogen/Oxygen Reactions at High Pressures and Intermediate Temperatures: Flow Reactor Experiments and Kinetic Modeling

机译:高压和中间温度下的氢/氧反应:流动反应器实验和动力学模型

摘要

A series of experimental and numerical investigations into hydrogen oxidation at high pressures and intermediate temperatures has been conducted. The experiments were carried out in a high pressure laminar flow reactor at 50 bar pressure and a temperature range of 600–900 K. The equivalence ratio of the mixture was varied from oxidizing to reducing conditions. Moreover, a series of experiments in an oxygen atmosphere instead of a nitrogen atmosphere has been done. A reaction mechanism based on a recent work by Burke et al. has been developed. In addition to modeling of the present experiments, the mechanism is used to simulate published data on ignition delay time and laminar burning velocity of hydrogen. The flow reactor results show that at reducing, stoichiometric, and oxidizing conditions, conversion starts at temperatures of 750–775 K, 800–825 K, and 800–825 K, respectively. In oxygen atmosphere, ignition occurs at the temperature of 775–800 K. In general, the present model provides a good agreement with the measurements in the flow reactor and with recent data on laminar burning velocity and ignition delay time.
机译:已经进行了在高压和中间温度下氢氧化的一系列实验和数值研究。实验在高压层流反应器中于50 bar压力和600–900 K的温度范围内进行。混合物的当量比从氧化条件到还原条件都不同。此外,已经在氧气气氛而不是氮气气氛中进行了一系列实验。基于Burke等人最近的工作的反应机理。已经被开发出来。除了对本实验进行建模外,该机制还用于模拟有关氢气的点火延迟时间和层流燃烧速度的公开数据。流动反应器结果表明,在还原,化学计量和氧化条件下,转化分别在750-775 K,800-825 K和800-825 K的温度下开始。在氧气气氛中,点火发生在775–800 K的温度下。通常,本模型与流动反应器中的测量以及层流燃烧速度和点火延迟时间的最新数据提供了很好的一致性。

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