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Modeling and temperature control of a glass furnace with preheated air using a gas turbine

机译:使用燃气轮机对带有预热空气的玻璃熔炉进行建模和温度控制

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The aim of this paper is to model and control a combined heat and power (CHP) system. The system is composed by a turbo-generator and a batch tank in a glass factory. The temperature of the furnace is to be controlled in order to produce quality glass. In a turbo-generator system a large amount of energy is wasted as thermal energy at the exhaust. Therefore, use of combined heat and power (CHP) systems is highly under attention. Since the hot exhaust gas has emissions which have a bad effect on the quality of molten glass, therefore, the hot exhaust must be used indirectly in melting glass process. Therefore, a rotary regenerator is proposed to transfer gas turbine exhaust heat to the inlet air of the glass melting furnace. It is assumed that the turbogenerator is operated at full load condition and gas turbine exhaust is directed into rotary regenerator to transfer gas turbine exhaust heat to inlet air of glass furnace. The designed controller is responsible for adjusting the fuel and inlet air to the furnace. A conventional controller, namely, PID controller is proposed in this paper. The simulation results depict the capabilities of the proposed controller in different working states.
机译:本文的目的是对热电联产(CHP)系统进行建模和控制。该系统由玻璃厂中的涡轮发电机和间歇罐组成。为了生产高质量的玻璃,必须控制熔炉的温度。在涡轮发电机系统中,大量的能量被浪费为排气处的热能。因此,高度重视热电联产(CHP)系统的使用。由于热废气的排放会对熔融玻璃的质量产生不良影响,因此,热废气必须间接用于熔融玻璃工艺中。因此,提出了一种旋转式蓄热器,以将燃气轮机的废热传递到玻璃熔炉的进气中。假设涡轮发电机在满负荷条件下运行,并且将燃气轮机废气引入旋转蓄热器,以将燃气轮机废气的热量传递到玻璃窑炉的进气中。设计的控制器负责调节炉子的燃料和进气。本文提出了一种常规的控制器,即PID控制器。仿真结果描述了所提出的控制器在不同工作状态下的能力。

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