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1)  The concentration of furnace ash
炉膛灰浓度
2)  Boiler Hearth Ash Blowing
炉膛吹灰
3)  long-hopper furnace
长灰斗炉膛
4)  V-type furnace bottom
(炉膛)冷灰斗
5)  furnace temperature
炉膛温度
1.
Applying the new technique of rich oxygen burning,improving and saving energy,discusses the advantages of the technique of rich oxygen burning at present, by elevating the furnace temperature, decreasing smoke heat loss, and avoiding the atmosphere pollution from nitrogen,also points out the way when disposing the hot side of boiler, and put forward the new way of new boiler product development.
从提高炉膛温度、减少排烟热损失和消除氮氧化物对大气的污染等三个方面论述了富氧燃烧新技术的优越性。
2.
Through simulating the influence of various ratio of primary and secondary air,position of upperlevel secondary air,coefficient of excess air,upon furnace temperature of the CFB boiler,and distribution of SO_2 and NO_x emission,the reasonable optimality of operational parameters has been a.
通过模拟不同一二次风比例、上级二次风位置、过量空气系数对CFB炉膛温度、SO2及NOx排放分布的影响,分析运行操作参数合理性,为440 t/h CFB锅炉的运行优化提供理论依据。
3.
With increased rear-arch and used high temperature and pressure steam as the secondary air,the furnace temperature and combustion efficiency was increased and the carbon particle s staying in furnace was also prolonged in addition to a good economic and social benefit.
对抛煤机锅炉的燃烧特点和存在的问题进行了分析,采取增设后拱和用高温、高压蒸汽作二次风的改造措施,提高了炉膛温度和燃烧效率,延长了碳颗粒在炉膛内停留时间,取得了较大的经济效益和社会效益。
6)  furnace height
炉膛高度
1.
2 YM2 tangentially fired boiler serving as a prototype a cold state modeling test was conducted with a view to studying the gas flow characteristics in the boiler furnace and the effect of furnace height on the gas velocity excursions in the horizontal flue.
2 -YM2型四角切向燃烧锅炉为原型进行了冷态模化试验 ,研究了炉内气流流动特性和炉膛高度对水平烟道烟速偏差的影响 ,分析了炉内气流旋转强度沿炉膛高度的变化规律 ,得出了合适的炉膛高度 ,为减小水平烟道烟气速度偏差和优化锅炉结构提供了重要的参考依
2.
The effect of furnace arch structure and furnace height on velocity deviation of flue gas channel is studied.
对引进型600MW机组四角切向燃烧锅炉进行冷态模化试验,系统地研究了上部炉膛折焰角结构和炉膛高度对水平烟道内气流速度不均匀性的影响。
补充资料:多炉膛焚烧炉
分子式:
CAS号:

性质:也称多炉膛焚烧炉。是固体废物焚烧处理的一种主要炉型。它由多段燃烧炉膛构成,炉中心有一顺时针旋转的中心轴,各段的中心轴上带有多个耙杆。操作时,将固体废物连续不断地送到最上层的外围处,在耙杆的作用下迅速在炉床上分散,然后由中间孔落到下一段。在第二段,固体废物在耙杆作用下,边分散边向外移动。并从外围落下。这样,固体废物在奇数段从外向里,在偶数段从里向外运动,逐层下落,被从炉底引入的热空气干燥,并在760~980℃下进行焚烧处理。多段焚烧炉具有适应性强、操作弹性大、可靠性高的优点,但机械设备多,需进行较多的维修和保养。它主要用于处理污泥等固体废物。

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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