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primary combustion的中文,翻译,解释,例句

primary combustion

primary combustion的基本解释
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初次燃烧, 一次燃烧, 预燃

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The waste combustion in the waste bed and the impacts of the waste burning efficiency are complex. In order to solve this problem, the method of numerical simulation has been adopted to simulate waste combustion, and calculate the mass loss rate, moisture evaporation, volatile release, char burning rate. Used the total flow rate of primary air between 50~1 000 Nm3/min to calculate the mass loss, excess air coefficient of waste bed, components of the gas. Calculated results show that the burning efficiency is higher when the total flow rate of primary air is at 517.47~632.09 Nm3/min .

针对垃圾焚烧炉床层内垃圾燃烧过程复杂性及影响垃圾燃烧效率因素多的问题,运用数值仿真方法对某垃圾焚烧炉床层垃圾燃烧进行了模拟,获得了垃圾质量流失速率、水分蒸发速率、挥发分释放速率、焦炭燃烧速率和烟气的温度;并在50~1 000 Nm3/min范围内改变一次风流量,获得了床层质量流失比值、过剩空气系数和烟气中各组分的质量百分比含量。

Some conclusions are followed:(1)the reaction ratio of boron is 12% in primary combustion;(2)the degree of agglomeration can be decreased adopting boron coated with AP;(3)the content of oxygen is very important for afterburning efficiency;(4)the afterburning efficiency will be changed with different air-gas ratio;(5)the head distance of after-burning chamber is increasing, the circumfluence in the head of after-burning chamber is stronger and the distribution of fuel backward the after-burning chamber is more well-proportioned.(6)the combustion efficiency of DR will be improved by increasing the area of fuel nozzle.(7)the angle between dual air-inlets have complex influence with the combustion of DR.

通过本项研究,取得如下结论:(1)一次燃烧硼反应比例在12~15%之间;(2)AP包覆硼,可以降低硼结团度,有利于一次燃烧喷射效率的提高,也有利于硼在补燃室进行二次燃烧;(3)进气空气中的氧含量对二次燃烧非常重要;(4)对于一定配方的含硼富燃推进剂,不同的空燃比,二次燃烧效率不同;(5)补燃室头部距离的增加能增强补燃室头部回流以及提高燃料在补燃室后段分布的均匀性;(6)在一定范围内,增加一次燃气喷嘴面积能提高冲压发动机燃料的燃烧效率;(7)进气道夹角对补燃室内燃料的燃烧影响复杂。

Moreover, increasing of fuel inlet temperature will lessen the mixing of the fuel and air in primary combustion zone, so the reactants distribution is more uniform and NOx emission is reduced greatly.

提高燃气入口温度,可抑制燃料和空气在主燃烧区的混合,使火焰内反应物的分布更加均匀,抑制了热力NO的生成,从而减少了NOx的排放量。

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prevailing wind:恒风

457 先行小组合代码 pre-sub code | 458 恒风 prevailing wind | 459 一次燃烧区域 primary combustion zone

principal axis:主轴线

459 一次燃烧区域 primary combustion zone | 460 主轴线 principal axis | 461 缉补船 prize