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1)  low-velocity filtration combustion
低速过滤燃烧
1.
An experimental study on the low-velocity filtration combustion of lean premixtures;
稀预混气体低速过滤燃烧的实验研究
2)  filtration combustion
过滤燃烧
1.
Numerical simulation of methane-air filtration combustion in porous media for hydrogen production
甲烷在多孔介质中过滤燃烧制氢的数值模拟
2.
This paper investigates the low-velocity filtration combustion of lean methane-air mixtures occurring in inert packed beds by using a modified one-temperature model.
以惰性堆积床内甲烷/空气低速过滤燃烧为例,因次分析系统特征尺度,基于修正的单温度模型,提出一种封闭的耦合解析方法,对燃烧过程进行理论分析。
3.
The fundamental solution methods of the two-temperature model and the modified one-temperature model were proposed for transient study of methane-air low-velocity filtration combustion in an inert packed bed.
基于双温度模型和修正的单温度模型,采用基本解方法,对惰性堆积床内甲烷/空气的低速过滤燃烧进行瞬态研究,给出瞬态温度分布,考察不同模型、不同球颗粒直径对燃烧波形状的影响,并对理论模型进行敏感性分析。
3)  rapid burning process
快速燃烧过程
4)  low NOX pulverized-coal burner in same velocity of two channels
等速型低NOX燃烧器
1.
The process of combustion in a 350 MW boiler was simulated and the results showed that the dense-dilute pulverized-coal concentration combustion technology did not change furnace radiation heat transfer,and NOX emission of low NOX pulverized-coal burner in same velocity of two channels was 12% lower than that of the conventional dense-dilute pulverized-coal concentration burner.
常规水平浓淡燃烧器的双通道速度差达6~8 m/s,该速度差会对燃烧稳定性、燃烧效率和NOX排放造成影响,通过对常规直流煤粉燃烧器、水平浓淡煤粉燃烧器和等速型低NOX燃烧器在350 MW电站锅炉上的燃烧过程数值模拟表明:浓淡燃烧技术不改变锅炉炉内的传热特性,等速型低NOX燃烧器比水平浓淡燃烧器可降低NOX排放12%。
5)  fast mixing combustion process
快速混合燃烧过程
1.
This paper presents the latest results on a fast mixing combustion process on a single cylinder research engine, and also the results of multicylinder engine with such combustion system.
介绍了快速混合燃烧过程(FMC)的最新研究成果及其在一多缸柴油机上的应用结果,在单、多缸柴油机燃烧系统硬件配置完全相同的条件下,取得良好的性能指标,满足了整机对燃烧过程的要求,且多缸机的各项性能指标与单缸机基本相当,证明了单缸机性能模拟整机性能的合理性。
6)  combustion process/acceleration conditions 
燃烧过程/加速工况
补充资料:沸腾床燃烧(见流化床燃烧)


沸腾床燃烧(见流化床燃烧)
boiling-bed combustion:see fluidized-bed combustion

沸腾床燃烧(boiling一bed eombustion)见流化床燃烧。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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