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首页> 外文期刊>The Korean journal of chemical engineering >Design evaluation of diesel-oxygen diffusion flame burner for start-up of high-pressure coal gasifier
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Design evaluation of diesel-oxygen diffusion flame burner for start-up of high-pressure coal gasifier

机译:高压煤气化炉启动用的柴油-氧气扩散火焰燃烧器的设计评估

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摘要

Commercial entrained-flow coal gasifiers operate at high temperatures and pressures for increased efficiency. For reduced operation costs, the start-up burner (SUB) of a gasifier requires fast heating and pressurization by intensive combustion, minimizing damage to the refractory lining and to itself. We evaluated different designs of the SUB adopting diesel-oxygen diffusion flame under the stoichiometric condition to improve the performance of the existing premixed flame burner that has been subjected to frequent failures. Using computational fluid dynamics, the combustion characteristics of the SUB with a thermal input up to 2.28MW(th) and pressure up to 8 bar were predicted for tests in a pilot-scale cylindrical gasifier. The results showed that the injection of diesel and oxygen through separate multiple inlets can intensify the combustion, leading to short and stable turbulent diffusion flames. Varying the design of the burner tip and inlet arrangement reduced the influence of pressure on the flame length while achieving high heat flux to the wall, which is essential for a fast and stable start-up. Further investigations are required to understand the influence of the reactor geometry on the circulation flow of high-temperature gas back to the burner tip in the actual gasifier.
机译:商业气流床气化炉在高温和高压下运行以提高效率。为了降低运行成本,气化炉的启动燃烧器(SUB)需要通过强烈燃烧来快速加热和加压,以最大程度地减少对耐火炉衬及其本身的损坏。我们对在化学计量条件下采用柴油-氧气扩散火焰的SUB的不同设计进行了评估,以改善现有的预混火焰燃烧器的性能,该燃烧器经常发生故障。通过计算流体动力学,预测了SUB燃烧特性,其热输入高达2.28MW(th),压力高达8 bar,用于中试规模的圆柱气化炉中的测试。结果表明,通过分开的多个进气口注入柴油和氧气可以增强燃烧,导致短而稳定的湍流扩散火焰。燃烧器尖端和进气口设计的变化减少了压力对火焰长度的影响,同时实现了对壁的高热通量,这对于快速稳定地启动至关重要。需要进一步研究以了解反应器几何形状对实际气化炉中返回到燃烧器尖端的高温气体循环流的影响。

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