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Heat transfer characteristics in a horizontal swirling fluidized bed
Authors:Ping Lu  Yan CaoWei-Ping Pan  Chengguo Ma
Institution:a School of Energy and Mechanical Engineering, Nanjing Normal University, Nanjing 210042, China
b ICSET, Western Kentucky University, Bowling Green, KY 42101, USA
c Black Dragon Double Boiler Co. Ltd., Shuangyashan, Heilongjiang 155110, China
Abstract:An innovative horizontal swirling fluidized bed (HSFB) with a rectangular baffle in the center of an air distributor and three layers of horizontal secondary air nozzles located at each corner of fluidized bed was developed. Experiments on heat transfer characteristics were conducted in a cold HSFB test model. Heat transfer coefficients between immersed tubes and bed materials in the HSBF were measured with the help of a fast response heat transfer probe. The influences of fluidization velocity, particle size of bed materials, measurement height, probe orientation, and secondary air injection, etc. on heat transfer coefficients were intensively investigated. Test results indicated that heat transfer coefficients increase with fluidization velocity, and reach their maximum values at 1.5-3 times of the minimum fluidization velocity. Heat transfer coefficients are variated along the circumference of the probe, and heat transfer coefficients on the leeward side of the probe are larger than that on the windward side of the probe. Heat transfer coefficients decrease with increasing of measurement height; heat transfer coefficients of the longitudinal probe are larger than that of the transverse probe. The proper secondary air injection and particle size of bed materials can generate a preferred hydrodynamics in the dense zone and enhance heat transfer in a HSFB.
Keywords:Swirling fluidized bed  Heat transfer  Secondary air injection
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