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Multivariable feedback control of small-capacity ammonia-water absorption systems

机译:小容量氨水吸收系统的多变量反馈控制

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摘要

This paper presents the development and experimental evaluation of a multivariable feedback controller for small-capacity ammonia-water absorption systems. Experiments were designed to identify the pairings between various controlled variables and the degrees of freedom available in the system. A small-scale experimental system was fabricated with access to all degrees of freedom in the system as tunable parameters. Transient analysis of variations in the degrees of freedom assisted in tuning the parameters of the control system to achieve fast, stable and repeatable performance. A methodology for controlling the cooling capacity of the system in response to changes in the load or operating conditions by adjusting the concentrated solution flow rate and the heat source temperature and mass flow rate is developed. In addition, the performances of the evaporator and the desorber are optimized by using flow control valves. Case studies using the developed controller demonstrated fast and stable performance of the system in achieving part-load performance as low as 50% of the baseline cooling capacity, and at off-design ambient temperature. Moreover, the system maintained high, near design COP (0.55-0.65) values during these test cases.
机译:本文介绍了用于小容量氨水吸收系统的多变量反馈控制器的开发和实验评估。设计实验以识别各种控制变量与系统中可用自由度之间的配对。制作了一个小型实验系统,可将系统中的所有自由度作为可调参数。自由度变化的瞬态分析有助于调整控制系统的参数,以实现快速,稳定和可重复的性能。提出了一种通过调节浓溶液流量以及热源温度和质量流量来响应负载或工况变化来控制系统冷却能力的方法。此外,通过使用流量控制阀可以优化蒸发器和解吸器的性能。使用开发的控制器进行的案例研究表明,在低于设计的环境温度下,该系统可实现低至基准制冷量50%的部分负荷性能,从而实现系统的快速稳定性能。此外,在这些测试案例中,系统保持了较高的接近设计COP(0.55-0.65)的值。

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