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Minimum bubbling fluidization velocity in a supercritical water fluidized bed acquired by the dual-capacitance probe method

在 supercritical 的最小的起泡使液化速度浇双电容的探查方法获得的使流体化的床

作     者:Huang, Jikai Lu, Youjun Wang, Hao 

作者机构:Xi An Jiao Tong Univ State Key Lab Multiphase Flow Power Engn Xian 710049 Shaanxi Peoples R China Qilu Univ Technol Shandong Acad Sci Energy Res Inst Jinan 250014 Shandong Peoples R China 

出 版 物:《CHEMICAL ENGINEERING SCIENCE》 (化学工程科学)

年 卷 期:2019年第199卷

页      面:359-370页

核心收录:

学科分类:0817[工学-化学工程与技术] 08[工学] 

基  金:Nation Key Research and Development Program of China [2016YFB0600102] National Nature Science Foundation of China [91634109, 51676158] 

主  题:Supercritical water fluidized bed Minimum bubbling fluidization velocity Dual-capacitance probe method 

摘      要:Supercritical water fluidized bed (SCWFB) is a newly developed reactor for coal and biomass gasification without releasing pollutants. The knowledge of two-phase flow properties in SCWFB is still lacked so far in literatures due to the extreme operating condition of high-pressure and high-temperature supercritical water. In this paper, a special dual-capacitance probe measurement system is developed for the extreme flow environment in SCWFB. It is found that the linear relationship is more precise in converting the capacitance of the probe sensor into local volume fraction of solids in SCWFB than Bottcher relationship. With the help of the newly-developed dual-capacitance probe measurement system, an experimental study on the bubbling fluidization in a SCWFB is carried out when the system pressure is in the range of 20-27 MPa and the system temperature is in the range of 410-570 degrees C. Four groups of quartz sands with different mean diameters which belong to Geldart type B classification are fluidized. It is found that the bed expansion method which was used in literatures to identify the onset of bubbling fluidization in supercritical carbon dioxide fluidized bed doesn t have enough precision in a SCWFB. To solve this problem, a new method of identifying the onset of bubbling fluidization in SCWFB is proposed. The minimum bubbling Reynolds number increases with the Archimedes number in a logarithmic relationship in SCWFB. At last, a new predicting correlation of the minimum bubbling fluidization velocity in SCWFB is proposed: Re-mb = 26.7091n(Ar + 10253.88) - 247.339, 1900 Ar 180000 The relative error of the new predicting correlation is within +/- 20% and the averaged relative error is 7.5%. The research work in this paper provides useful guidance for the optimization and operation of SCWFB reactor. (C) 2019 Elsevier Ltd. All rights reserved.

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