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Phase-Plane Invariant Analysis of Pressure Fluctuations in Fluidized Beds

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【作者】 王晓亮; 何榕; Toshiyuki Suda; Junichi Sato;

【Author】 WANG Xiaoliang , HE Rong , Toshiyuki Suda , Junichi Sato Department of Thermal Engineering, Tsinghua University, Beijing 100084, China; Technical Development Department, Ishikawajima-Harima Heavy Industries Co., Ltd., Yokohama 235-8501, Japan

【机构】 Department of Thermal Engineering Tsinghua University; Department of Thermal Engineering; Tsinghua University; Technical Development Department; Ishikawajima-Harima Heavy Industries Co.; Ltd. Yokohama 235-8501; Japan; Beijing 100084; China;

【摘要】 Partial agglomeration is a major problem in fluidized beds. A chaotic analytical method based on the phase-plane invariant of the pressure fluctuations in the fluidized beds has been used to warn of ag-glomeration at an early stage. Cold tests (no combustion) and hot tests (combustion) in fluidized beds show that the phase-plane invariant of the pressure fluctuations can distinguish the dynamic behavior of fluidized beds with different flow rates in cold tests. With combustion, when the flow rate was kept constant, agglom-eration was detected very early by looking at the phase-plane invariant. The phase-plane invariant can be used to distinguish changes in fluidized beds due to changes in the flow rate, agglomeration, or various other factors. Therefore, this reliable agglomeration early warning system can be used for better control of circulating fluidized beds.

【Abstract】 Partial agglomeration is a major problem in fluidized beds. A chaotic analytical method based on the phase-plane invariant of the pressure fluctuations in the fluidized beds has been used to warn of ag-glomeration at an early stage. Cold tests (no combustion) and hot tests (combustion) in fluidized beds show that the phase-plane invariant of the pressure fluctuations can distinguish the dynamic behavior of fluidized beds with different flow rates in cold tests. With combustion, when the flow rate was kept constant, agglom-eration was detected very early by looking at the phase-plane invariant. The phase-plane invariant can be used to distinguish changes in fluidized beds due to changes in the flow rate, agglomeration, or various other factors. Therefore, this reliable agglomeration early warning system can be used for better control of circulating fluidized beds.

【基金】 the Ishikawajima-Harima Heavy Industries Co., Ltd., Japan
  • 【文献出处】 Tsinghua Science and Technology ,清华大学学报(自然科学版)(英文版) , 编辑部邮箱 ,2007年03期
  • 【分类号】TQ021
  • 【下载频次】48
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