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1)  cold aerodynamic field
冷态空气动力场
1.
In order to understand the distribution characters of aerodynamic field of the 1913t/h supercritical tangential firing boiler in a power plant after it has been overhauled,a cold aerodynamic field experiment was made.
为了解某电厂1913t/h超临界四角切圆锅炉大修后炉内空气动力场的分布特性,进行了锅炉冷态空气动力场试验。
2)  cold condition atmosphere power plant
冷态动力场
3)  cold air velocity field
冷态空气速度场
4)  aerodynamic field
空气动力场
1.
Experimental cold-state modeling studies of aerodynamic field in the biomass boiler;
生物质锅炉空气动力场冷态模化试验研究
2.
Experimental research of aerodynamic field in multi-function burner;
多功能燃烧器的空气动力场实验研究
3.
Application of Computer Image Capture Device in Testing of Aerodynamic Field of Boiler;
计算机图像采集装置在锅炉空气动力场试验中的应用
5)  Air dynamic field
空气动力场
1.
The results show that it is the inherent characteristics of W-flame boiler, and is mainly determined by the air dynamic field inside the furnace.
这主要是由W火焰锅炉炉内空气动力场特性决定的。
2.
The air dynamic field inside and around tower was simulated numerically and the characteristics of tower inner heat and mass transfer between water and air were also analyzed.
为阐明十字隔墙对自然通风逆流湿式冷却塔冷却特性的影响,基于CFD软件FLUENT,建立了十字隔墙湿式冷却塔的三维数值计算模型,对塔内外空气动力场及塔内气-水两相间的传热传质进行了三维数值模拟。
6)  aerodynamical field
空气动力场
1.
Measuring flow field in the boiler with a hot -wire anemometer,and studies of regularity on the influence of momentum flow ra te of air flow from vari ous spouts of burners on aerodynamical field in boiler are made in the paper.
针对珞璜电厂引进法国Stein公司 360MW的W型火焰锅炉进行了冷态模化研究 ,采用热线风速仪对炉内流场进行测试 ,研究了燃烧器配风 (改变各次风动量流率比 )对炉内空气动力场的影响规律 ,并对所得结果进行了比较与分析。
2.
Cool state experimental investigation has been made in a model of the 360 MW W shaped flame boiler,measuring flow field in the boiler with a hot wire anemometer,and studies of regularity on influence of injection angle of burners on aerodynamical field in boiler is made in this paper.
对引进的 36 0 MW的 W型火焰锅炉进行冷态模化研究 ,用热线风速仪测试炉内流场 ,研究了燃烧器喷射角度对炉内空气动力场的影响规律。
补充资料:临界流态化速度
分子式:
CAS号:

性质:又称临界流态化速度。在流态化状态下相应的流体速度。所谓流态化状态是指这样一种状态,即在直立的容器内加入颗粒状固体物料,控制流体以一定速度由底部通入,使其压力降等于或略大于单位截面上固体颗粒的重量,固体颗粒即呈悬浮状态运动而不致被流体带走,其上部具有一个水平的界面。

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