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首页> 外文期刊>International journal of hydrogen energy >Laminar flame speed correlations for pure-hydrogen and high-hydrogen content syngas blends with various diluents
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Laminar flame speed correlations for pure-hydrogen and high-hydrogen content syngas blends with various diluents

机译:纯氢和高氢含量合成气与各种稀释剂的层流火焰速度关系

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摘要

Hydrogen is an attractive fuel for large-scale combustion systems due to its high flame speeds and clean burning characteristics. This paper presents a new set of correlations for the laminar flame speeds of hydrogen-oxygen mixtures with nitrogen (air) and helium as diluents, using a recently updated chemical kinetics mechanism. A wide excursion of equivalence ratios (φ = 0.5-5.0), pressures (1-30 atm) and temperatures (270-620 K) was performed. Flame speed correlations were developed at five pressures, namely 1, 5,10, 20, and 30 atm for the pure-hydrogen case. The disparities between the kinetic model predictions and the correlation estimates, commonly associated with existing correlations, were significantly reduced, and the correlation estimates are within ±13 cm/s of the model predictions. Also, a correlation for lean and high-hydrogen content (HHC) syngas blends of H_2 + CO + H_2O was developed from the pure-hydrogen correlations. A wide range of pressures (1-30 atm), initial temperatures (323-550 K), steam contaminant levels (5-15%), and hydrogen content in the fuel blend (15-100%) were simulated. A design of experiments approach was adopted to determine the critical mixtures necessary to develop the correlation. The developed HHC correlation agrees within ±12% of the model predictions.
机译:氢气因其高火焰速度和清洁燃烧特性而成为大规模燃烧系统的诱人燃料。本文利用最近更新的化学动力学机理,提出了一套以氮气(空气)和氦气为稀释剂的氢氧混合物的层流火焰速度的新的相关性。进行了当量比(φ= 0.5-5.0),压力(1-30 atm)和温度(270-620 K)的大范围偏移。对于纯氢,火焰速度的相关性是在五个大气压下形成的,即1、5、10、20和30 atm。动力学模型预测与通常与现有相关性相关的相关性估计之间的差异显着减小,并且相关性估计在模型预测的±13 cm / s之内。此外,还从纯氢相关性中得出了H_2 + CO + H_2O的稀氢和高氢含量(HHC)合成气混合物的相关性。模拟了大范围的压力(1-30 atm),初始温度(323-550 K),蒸汽污染物水平(5-15%)和燃料混合物中的氢含量(15-100%)。设计了一种实验方法来确定发展相关性所需的关键混合物。发达的HHC相关性在模型预测的±12%之内。

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