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Decoupling Control of Fluid Catalytic Cracking Unit 被引量:1
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作者 Duraid Fadhil Ahmed 《Journal of Chemistry and Chemical Engineering》 2011年第1期12-19,共8页
This study presents a decoupling control scheme of fluid catalytic cracking unit to account for the high interaction between two temperature control loops. The feed flow rate load disturbance is introduced to test the... This study presents a decoupling control scheme of fluid catalytic cracking unit to account for the high interaction between two temperature control loops. The feed flow rate load disturbance is introduced to test the proposed decoupling control scheme. Through simulation study shown that the decoupling is effective, stable and it presents advantage over controller without decoupler. Also, this scheme is able to offer good dynamic performance for most disturbances. 展开更多
关键词 control of fluid catalytic cracking unit multivariable control decoupling control.
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J_n-INTEGRAL AND THE CONTROLLING PARAMETER FOR CRACK GROWTH
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作者 Guan Zhongxin and Yang XiaobuaNorthwestern Polytechnical University 《Chinese Journal of Aeronautics》 SCIE EI CAS CSCD 1990年第3期194-203,共10页
The J-integral as a controlling parameter was applied to the crack growing process in an elastic-plastic state by Hutchinson and Paris[1], and Shih et. al[2]. An engineering approach based on J-integral was proposed b... The J-integral as a controlling parameter was applied to the crack growing process in an elastic-plastic state by Hutchinson and Paris[1], and Shih et. al[2]. An engineering approach based on J-integral was proposed by Ref.[3]. Obviously, it is necessary to determine whether J is really a bask controlling parameter. It has been shown from the results given in this paper that it is not bask, but the Jn-integral defined in this paper is a proper controlling parameter for crack growth in an clastic-plastic state. 展开更多
关键词 J_n-INTEGRAL AND THE controlLING PARAMETER FOR CRACK GROWTH
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Research on a Neural Network Approach Based Diagnosis Expert System of Crack Control in Massive Concrete
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作者 HAN Liu-xin 1, WANG Huan-chen 1,\ ZHANG Xian-hui 2 1.Institute of Systems Engineering, Shanghai Jiaotong University, Shanghai 200052, China 2.Shanghai Yongye Enterprise (Group) Co., Ltd,200021 《Journal of Systems Science and Systems Engineering》 SCIE EI CSCD 2001年第3期359-365,共7页
A detailed study of the capabilities of artificial neural networks to diagnoses cracks in massive concrete structures is presented. This paper includes the components of the expert system such as design thought, basic... A detailed study of the capabilities of artificial neural networks to diagnoses cracks in massive concrete structures is presented. This paper includes the components of the expert system such as design thought, basic structure, building of knowledge base and the implementation of neural network applied model. The realizing method of neural network based clustering algorithm in the knowledge base and self study is analyzed emphatically and stimulated by means of the computer. From the above study, some important conclusions have been drawn and some new viewpoints have been suggested. 展开更多
关键词 neural network approach expert system crack control
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Key technical innovations in the construction of Baihetan Hydropower Station Project
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作者 Zhilin WANG Bingliu ZHANG 《Frontiers of Engineering Management》 CSCD 2023年第2期367-372,共6页
1 Project positioning Baihetan Hydropower Station is classified as the second of the four hydropower cascades in the lower reaches of the Jinsha River:Wudongde,Baihetan,Xiluodu and Xiangjiaba.As an important backbone ... 1 Project positioning Baihetan Hydropower Station is classified as the second of the four hydropower cascades in the lower reaches of the Jinsha River:Wudongde,Baihetan,Xiluodu and Xiangjiaba.As an important backbone project for China to implement the strategy of West-to-East Power Transmission and optimize the energy structure,it constitutes an important part of the Yangtze River flood control system.Located at the junction of Ningnan County,Sichuan Province and Qiaojia County,Yunnan Province,the hydropower station is the largest hydropower project under construction in the world,with a unit capacity of million-kilowatts ranking the highest in the world and a total installed capacity of 16 million kW,second only to the Three Gorges Project,ranking the second in the world. 展开更多
关键词 ultra-high arch dam columnar jointed basalt low-heat cement concrete temperature controlled crack prevention million-kilowatt unit intelligent construction
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