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the fire furnace
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     This paper discusses and analyzed the PID parameters turning methods in detail as well as the constructions and designed method of fuzzy- PID controller, the process of control rules. The temperature control of the fire furnace was realized and met the standards of ISO834.to the by this controller with hardware of industrial control computer.
     详细分析了PID参数整定原理,模糊PID控制器结构原理和设计方法,控制规则库的推理过程,并以工控计算机为硬件控制核心,实现于的建筑火灾实验炉的温度控制中,使得建筑火灾实验炉温度控制完全符合国标GB9978—88的要求。
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According to the conventional PID control, combining to the contemporary fuzzy control theory, the fuzzy- controller was be de- signed and used to control the temperature of fire furnace. This paper discusses and analyzed the PID parameters turning methods in detail as well as the constructions and designed method of fuzzy- PID controller, the process of control rules. The temperature control of the fire furnace was realized and met the standards of ISO834.to the by this controller with hardware of industrial...

According to the conventional PID control, combining to the contemporary fuzzy control theory, the fuzzy- controller was be de- signed and used to control the temperature of fire furnace. This paper discusses and analyzed the PID parameters turning methods in detail as well as the constructions and designed method of fuzzy- PID controller, the process of control rules. The temperature control of the fire furnace was realized and met the standards of ISO834.to the by this controller with hardware of industrial control computer.

本文根据传统PID控制技术,结合模糊控制理论,设计出模糊PID控制器,并用它完成对火灾实验炉温度的控制。详细分析了PID参数整定原理,模糊PID控制器结构原理和设计方法,控制规则库的推理过程,并以工控计算机为硬件控制核心,实现于的建筑火灾实验炉的温度控制中,使得建筑火灾实验炉温度控制完全符合国标GB9978—88的要求。

In this paper,the three-dimensional gaseous combustion process in fire furnace is simulated.The fire characteristics in furnace are showed by numerical simulation applying the realizable k-ε model to calculate the turbulent reacting flow,the finite-rate/eddy-dissipation model to study turbulent combustion,and P1 model to simulate radiation heat transfer.Especially,the effects of inlet pressure,fuel-to-air ratio,and combined conditions of the burners on temperature and velocity field are investigated.On the base...

In this paper,the three-dimensional gaseous combustion process in fire furnace is simulated.The fire characteristics in furnace are showed by numerical simulation applying the realizable k-ε model to calculate the turbulent reacting flow,the finite-rate/eddy-dissipation model to study turbulent combustion,and P1 model to simulate radiation heat transfer.Especially,the effects of inlet pressure,fuel-to-air ratio,and combined conditions of the burners on temperature and velocity field are investigated.On the base of these results,some advice for the operation are given,which supply useful reference for the practice of the fire furnace.

本文对某工业火烧炉内的三维湍流气相燃烧场特性进行了数值模拟,湍流模型采用可实现k-ε双方程模型,湍流燃烧采用有限速率/涡耗散模型,辐射换热采用P1模型,数值方法采用SIMPLE算法,实现了炉内火烧试验的数值再现,特别考察了入口压力、燃料/空气比、多烧嘴不同组合工况等因素对炉内温度场和流场的影响,并对该火烧炉的运行提出了一些合理化建议,为其实际运行提供了有益的参考。

 
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