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作 者:夏云飞[1] 程乐鸣[1] 余春江[1] 王勤辉[1] 张维国[1] 方梦祥[1]
机构地区:[1]能源清洁利用国家重点实验室(浙江大学),浙江省杭州市310027
出 处:《中国电机工程学报》2015年第8期1962-1968,共7页Proceedings of the CSEE
基 金:中国科学院战略性先导科技专项(XDA07030100)~~
摘 要:针对循环流化床炉膛中一种新型"□"形悬吊换热屏("□"形屏),采用光纤探针测试其周边气固流动特性,研究空截面气速、静止床料高度、"□"形屏宽和出口尺寸对其周边气固流动的影响。结果表明,"□"形屏内上部颗粒体积分数径向呈"~"型分布,中、下部呈"∪"型分布;屏内上、中、下部颗粒轴向速度径向均呈"∩"型分布,中、上部屏内壁面颗粒基本向下流动,下降流下降速度随空截面气速的增大而增大;屏周边颗粒体积分数随空截面气速和静止床料高度的增大而增大;"□"形屏出口尺寸对相应屏内区域颗粒流动有影响;对于循环流化床锅炉,"□"形屏宽对应有一合理范围。This paper presented an experimental research on the gas-solid hydrodynamics around novel □-shaped suspended heat transfer surfaces(□-wall) in a CFB test rig. The solids volume fraction and velocity around the □-wall were measured by using a fiber optical probe. Effects of the superficial gas velocity, static bed height and width and exit size of the □-wall on the gas-solid hydrodynamics were studied. Results show that the solids volume fraction radially shows a "~" shape profile at the upper section while "∪"shape profiles at the middle and lower sections in the □-wall. The solids vertical velocity at the upper, middle and lower sections in the □-wall show "∩" shape profiles radially. Particles flow downward on the □-wall inner surface at the upper and middle sections, and the falling velocity increases with the superficial gas velocity. The solids volume fraction around the □-wall increases as the superficial gas velocity and static bed height increase. Effects of the □-wall exit on the gas-solid hydrodynamics are mainly performed in the exit region of the □-wall. For a CFB boiler, there exists a reasonable range for the width of the □-wall.
分 类 号:TK224[动力工程及工程热物理—动力机械及工程]
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