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1)  tangentially fired furnace
切向炉
1.
A 6 wire vorticity probe was used for the first time to measure the velocity and vorticity distribution behind the partition panel of the cold model of a HG-2008-YM2 tangentially fired furnace.
首次使用六线涡量探针在切向炉HG - 2 0 0 8-YM2的冷模上测量了其小分隔屏后的速度及涡量分布 ,得到了湍流特征的参数 (如湍流强度、倾斜因子及平坦因子等 )。
2.
A 6-sensor hot-wire probe is used firstly to measure the velocity and the vorticity fields behind the SH panel region of a tangentially fired furnace.
本文首次使用六线涡量探针在切向燃烧煤粉炉(切向炉)HG-2008-YM2的冷模上测量了其小分隔屏后的流场,即速度场及涡量场,得到了描述湍流特征的参数如湍流强度、倾斜因子及平坦因子等。
2)  tangentially fired boiler
切向燃烧炉
1.
This paper describes a three dimensional computer simulation developed to study the effects of the reverse swirl of secondary air on flue gas imbalance in tangentially fired boiler.
数值模型应用在一个不同二次风反切工况下的 6 0 0MW切向燃烧炉。
3)  tangential fired boiler
切向燃烧锅炉
1.
Different meshes employed to simulate fluid flow in TFB(tangential fired boiler)were discussed and mesh methods to decrease crossflow diffusion were investigated.
为了探讨网格在计算中的作用,计算了切向燃烧锅炉模拟中采用直角网格布置导致的伪扩散效应在炉膛的分布。
4)  tangentially fired boiler
切向燃烧锅炉
1.
Based on the cold modeling test on a tangentially fired boiler of 600?MW unit, the cold flow field in furnace and the velocity deviation in the horizontal flue gas pass is numerically investigated.
在对 6 0 0MW四角切向燃烧锅炉进行冷态模化实验的基础上 ,对四角切向燃烧锅炉炉内流场及水平烟道内速度偏差进行了数值模拟 ,分析了炉内气流流动特性和水平烟道烟气速度偏差的形成机理 ,提出了减小水平烟道烟气偏差的措施。
2.
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
3.
2 YM2 type tangentially fired boilers.
2 -YM2型四角切向燃烧锅炉为原型进行冷态模化试验 ,采用热线风速仪测量了上部炉膛及水平烟道内的流场 ,研究了上部炉膛屏区气流速度分布特点 ,分析了水平烟道内烟气速度偏差和温度偏差的形成机理 ,为科学地分析过热器、再热器超温爆管的原因和减小水平烟道烟气温度偏差提供参考。
5)  tangential-firing boiler
四角切向燃烧锅炉
6)  tengentially fired furnace
切向燃烧煤粉锅炉
补充资料:切向力
物体作曲线运动时,在其轨道切线方向上所受到的力。它使物体获得切向加速度。如平抛运动中,重力的切向分力将产生切向加速度,使物体的切向速度逐渐增大。
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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