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Solid circulation and gas bypassing characteristics in a square internally circulating fluidized bed with draft tube

机译:带引流管的方形内部循环流化床中的固体循环和气体旁路特性

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The effects of gas velocities to draft tube (26.64-52.54 cm/s) and to annulus section (8.14—11.84 cm/s) on solid circulation rate and gas bypassing fractions were determined in a square internally circulating fluidized bed reactor with an orifice-type square draft tube. The solid circulation rate and gas bypassing fraction from the annulus section to the draft tube increase but gas bypassing fraction from the draft tube to the annulus section decreases with increasing gas velocity to the draft tube. With increasing gas velocity to the annulus section, the solid circulation rate and gas bypassing fraction from the draft tube to the annulus section increase but, gas bypassing fraction from the annulus section to the draft tube decreases. The solids circulation rate was correlated with the pressure drop across the orifice and the opening area ratio based on the orifice theory. The gas bypassing fraction was correlated with gas velocities to the fluidized and the moving beds. Based on the gas bypassing fraction data, the gas flow rates across the orifice were correlated with gas velocities to the fluidized and the moving beds, opening area ratio, particle size and solids height in the bed.
机译:在方形内部循环流化床反应器中,测定了通向引流管(26.64-52.54 cm / s)和环段(8.14-11.84 cm / s)的气体速度对固体循环速率和旁路气体分数的影响。型方型引流管。从环形部分到引流管的固体循环速率和气体旁通分数增加,但是从引流管到环形部分的气体旁通分数随着通向引流管的气体速度的增加而减小。随着到达环空部分的气体速度的增加,从回流管到环空部分的固体循环速率和气体旁路分数增加,但是从环空部分到引流管的气体旁路分数减小。基于孔理论,固体循环速率与孔两端的压降和开口面积比相关。气体旁路分数与流化床和移动床的气体速度相关。根据气体旁路馏分数据,流过孔口的气体流速与流化床和移动床的气体流速,开口面积比,粒径和床中的固体高度相关。

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