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基于状态变量控制器的再热汽温控制系统 被引量:26
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作者 吕剑虹 袁震 +3 位作者 杨榕 薛文顺 石江陵 陈延明 《中国电力》 CSCD 北大核心 2002年第1期53-56,共4页
针对南京热电厂6号机组再热汽温被控对象滞后大的特点,采用状态变量控制器,重新设计了原来的再热汽温控制系统。实际运行表明,采用基于状态变量控制器的再热汽温控制系统,在机组升、降负荷及启、停制粉系统的过程中,均使锅炉再热汽温严... 针对南京热电厂6号机组再热汽温被控对象滞后大的特点,采用状态变量控制器,重新设计了原来的再热汽温控制系统。实际运行表明,采用基于状态变量控制器的再热汽温控制系统,在机组升、降负荷及启、停制粉系统的过程中,均使锅炉再热汽温严格控制在允许的范围内,是一种对大滞后过程比较有效的控制方法。 展开更多
关键词 锅炉 再热器 冷温控制系统 状态变量控制
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Heat absorption control equation and its application of cool-wall cooling system in mines 被引量:2
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作者 CHANG Zhang-yu JI Jing-wei +2 位作者 WANG Ke-yi NI Lu LI Ning-ning 《Journal of Central South University》 SCIE EI CAS CSCD 2021年第9期2735-2751,共17页
In order to solve the heat damages in deep mines, a cool-wall cooling technology and its working model are proposed based on the principles of heat absorption and insulation in this paper. During this process, the dif... In order to solve the heat damages in deep mines, a cool-wall cooling technology and its working model are proposed based on the principles of heat absorption and insulation in this paper. During this process, the differential equation of thermal equilibrium for roadway control unit is built, and the heat adsorption control equation of cool-wall cooling system is derived by an integral method, so as to obtain the quantitative relationship among the heat absorption capacity of cooling system, the heat dissipating capacity of surrounding rock and air temperature change. Then, the heat absorption capacity required by air temperature less than the standard value for safety is figured out by section iterative method with the simultaneous solution of heat absorption control equation and the heat dissipation density equation of surrounding rock. Finally, the results show that as the air temperature at the inlet of roadway is 25 ℃, the roadway wall is covered by heat-absorbing plate up to 39% of the area, as well as the cold water is injected into the heat-absorbing plate with a temperature of 20 ℃ and a mass flow of 113.6 kg/s, the air flow temperature rise per kilometer in the roadway can be less than 3 ℃. 展开更多
关键词 cold-wall cooling system heat absorption control equation heat dissipation boundary conditions safe thermal environment system design
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