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Pressure intelligent control strategy of Waste heat recovery system of converter vapors

机译:转炉蒸汽废热回收系统的压力智能控制策略

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The converter gas evaporative cooling system is mainly used for absorbing heat in the high temperature exhaust gas which produced by the oxygen blowing reaction. Vaporization cooling steam pressure control system of converter is a nonlinear, time-varying, lagging behind, close coupling of multivariable control object. This article based on the analysis of converter operation characteristics of evaporation cooling system, of vaporization in a production run of pipe pressure variation and disturbance factors.For the dynamic characteristics of the controlled objects,we have improved the conventional PID control scheme.In Oxygen blowing process, we make intelligent control by using fuzzy-PID cascade control method and adjusting the Lance,that it can realize the optimization of the boiler steam pressure control.By design simulation, results show that the design has a good control not only ensures drum steam pressure in the context of security, enabling efficient conversion of waste heat.And the converter of 1800 flue gas through pipes and cool and dust removal also can be cooled to about 800° .Therefore the converter haze evaporative cooling system has achieved to the converter haze temperature decrease effect and enhanced to the coal gas returns-ratio.
机译:转换器气体蒸发冷却系统主要用于吸收由氧气吹气反应产生的高温废气中的热量。转换器的汽化冷却蒸汽压力控制系统是多可变控制对象的非线性,时变,滞后的背后,紧密耦合。本文根据蒸发冷却系统转换器运行特性分析,蒸发在管压变化和干扰因素的生产运行中。对于受控物体的动态特性,我们改进了传统的PID控制方案。氧气吹气过程中,通过使用模糊PID级联控制方法进行智能控制,并调整枪支,可以实现锅炉蒸汽压力控制的优化。设计仿真,结果表明,设计具有良好的控制,不仅确保滚筒蒸汽安全性的压力,使废热的有效转换。通过管道的1800烟气的转换器,冷却和除尘也可以冷却至约800°。因此,转换器雾霾蒸发冷却系统已经实现了转换器雾度温度降低效果,增强到煤气返回率。

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