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气化炉洗涤冷却室内气液两相湍流流动特性的数值模拟
引用本文:吴晅,高靖芳,武文斐,袁竹林.气化炉洗涤冷却室内气液两相湍流流动特性的数值模拟[J].热力发电,2012,41(4):23-29.
作者姓名:吴晅  高靖芳  武文斐  袁竹林
作者单位:1. 内蒙古科技大学能源与环境学院,内蒙古包头,014010
2. 东南大学能源与环境学院,江苏南京,210096
基金项目:国家重点基础研究发展规划(973计划)(2004CB217707);国家自然科学基金资助项目(51166010)
摘    要:建立分别描述气相和液相湍流的两相湍流欧拉-欧拉双流体模型,模拟新型水煤浆气化炉洗涤冷却室内气体穿越液池过程中的气液两相流动特性。通过与试验结果的对比,表明该模型能对气化炉洗涤冷却室内的气液流动进行较好的预测。研究发现,气体在反折向上流动过程中,在冷却管外壁面聚集并主要沿冷却管边缘上升,且具有较大的上升速度;气液湍动能主要发生在冷却管出口及冷却管外壁面附近;洗涤冷却室内分隔板的存在促进了气体的扩散,使气相在液池内的分布更广,能有效抑制液面的波动,有利于装置的稳定运行。

关 键 词:气化炉  洗涤冷却室  气液两相流  湍流流动  气体扩散  液面波动

NUMERRICAL SIMULATION OF FLOW BEHAVIOR CONCERNING GAS- LIQUID TWO- PHASE TURBULENCE IN SCRUBO- COOLING CHAMBER OF THE GASIFIER
WU Xuan , GAO Jingfang , WU Wenfei , YUAN Zhulin.NUMERRICAL SIMULATION OF FLOW BEHAVIOR CONCERNING GAS- LIQUID TWO- PHASE TURBULENCE IN SCRUBO- COOLING CHAMBER OF THE GASIFIER[J].Thermal Power Generation,2012,41(4):23-29.
Authors:WU Xuan  GAO Jingfang  WU Wenfei  YUAN Zhulin
Affiliation:1.College of Energy and Environment,Inner Mongolian University of Science and Technology,Baotou 014010,Inner Mongolian Region,PRC 2.College of Energy and Environment,South-east China University,Nanjing 210096,Jiangsu Province,PRC
Abstract:A two-fluid Euler-Euler model of two-phase turbulence,for describing the gas and liquid-phase turbulence respectively,has been established,and the flow behavior of gas-liquid two-phase flow in the process of gas penetrating liquid pool in scrubo-cooling chamber of the new type coal-water slurry gasifier being simulated.Through comparison with the test results,it shows that the said model can better predict the gas-liquid flow behavior in scrubo-cooling chamber of the gasifier.It is found from study that the gas in flow process of turning upward aggragates along the outer wall of cooling pipe and rises mainly along the periphery of cooling pipe,and the rising velocity is larger,the turbulent kinetic energy of gas and liquid occurred mainly near the exit and outer wall of said cooling
Keywords:gasifier  scrubo-cooling chamber  gas-liquid two-phase flow  turbulent flow  numerical simulation
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