首页> 外文会议>ASME international heat transfer conference;IHTC14 >NUMERICAL SIMULATION OF GAS/OIL CO-COMBUSTION PROCESS AND THERMAL NO_X FORMATION IN A RETROFITTED OIL-BURNING BOILER
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NUMERICAL SIMULATION OF GAS/OIL CO-COMBUSTION PROCESS AND THERMAL NO_X FORMATION IN A RETROFITTED OIL-BURNING BOILER

机译:改造燃油锅炉内气/油混合燃烧过程及NO_X热形成的数值模拟。

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The purpose of this paper is to realize oil/gas co-combustion in an oil-burning boiler and to examine the effect of co-combustion of heavy fuel oil and refinery gas on the thermal NOx formation. The analysis was carried out by means of 3-D numerical simulation. Comprehensive mathematical model of the furnace was setup to include all relevant aerodynamic and thermo-chemical processes in the furnace. Heat transferred to the furnace walls and temperature field in the furnace were also examined in order to establish regions of safe and efficient boiler operation for different operational conditions. Realization of oil/gas co-firing safely, efficiently and with lower NOx emission in many old oil-burning boilers by retrofitting does not only deal with combustible waste gas, but also take advantage of thermal energy from the refinery gas.
机译:本文的目的是实现燃油锅炉中的油气混合燃烧,并研究重油和炼厂气混合燃烧对热氮氧化物形成的影响。通过3-D数值模拟进行分析。建立了熔炉的综合数学模型,以包括熔炉中所有相关的空气动力学和热化学过程。还检查了传递到炉壁的热量和炉中的温度场,以便为不同的运行条件建立安全有效的锅炉运行区域。通过翻新,在许多旧式燃油锅炉中,安全,高效地共烧燃油和降低NOx排放,不仅可处理可燃气体,还利用了炼厂气的热能。

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