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Experimental Study on Gas Temperature Control for a High-Speed Heat-Airflow Wind Tunnel

机译:高速热风风洞气体温度控制实验研究

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摘要

In this article, a practical temperature control issue of gas for a high-speed heat-airflow wind tunnel (HSHAWT) is solved. Based on the principal analysis and the system configuration description, the mathematical models to describe the dynamic characteristics of the fuel delivery system and the fuel combustion system are established. Two control frameworks of gas temperature for HSHAWT are proposed. One is to realize the gas temperature control by using the method that regulates the fuel flow rate on the basis of the air flow rate being a constant; the other is the two-loop cascade control framework that takes gas temperature as a controlled objective, fuel flow rate as a controlled object in the secondary control loop, and gas temperature as the controlled object in the main control loop. Furthermore, experimental comparative studies on the flow rate of fuel and temperature of gas are carried out by using a variety of control algorithms, and a satisfactory control effect on the gas temperature is achieved. (C) 2016 American Society of Civil Engineers.
机译:本文解决了高速热气流风洞(HSHAWT)的气体实际温度控制问题。基于原理分析和系统配置描述,建立了描述燃油输送系统和燃油燃烧系统动态特性的数学模型。提出了HSHAWT的两种气体温度控制框架。一种是通过使用基于恒定的空气流量来调节燃料流量的方法来实现气体温度控制。另一个是两回路级联控制框架,该框架以燃气温度为受控目标,燃料流量为辅助控制环路中的受控对象,燃气温度为主控制环路中的受控对象。此外,通过使用各种控制算法进行了燃料流量和气体温度的实验比较研究,并获得了对气体温度的令人满意的控制效果。 (C)2016年美国土木工程师学会。

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