萃取(化学)
热能储存
流量(数学)
热能
质量流
热质量
环境科学
能量(信号处理)
热的
石油工程
机械
工程类
化学
数学
物理
热力学
色谱法
统计
作者
Orlando Montoya-Márquez,Hector Acevedo,Leonardo J. Valdivia
出处
期刊:Journal of Solar Energy Engineering-transactions of The Asme
[ASM International]
日期:2024-11-18
卷期号:: 1-26
摘要
Abstract This paper introduces an experimental approach to enhance thermal energy storage tank performance by employing a novel control strategy and an automatic flow valve. The valve adjusts mass flow to minimize heat loss and maximize useful heat within a specified input-output temperature range. Experiments were conducted indoors, simulating input heat via an electric heating element, and adhering to ANSI/ASHRAE 93-2010 standards. The proposed control strategy, the set point is self-regulated based on an input value which in this case is the heat introduced into the Thermal Energy Storage (TES) system. In this way, when there is more input heat available, the mass flow will increase to obtain more useful heat at the output and, on the contrary, when there is less heat available, the mass flow will be reduced to obtain greater exergy. A comparison between this strategy and conventional on-off control systems was conducted, evaluating their performance based on useful heat obtained over an eight-hour period with varying input heat levels. Results demonstrate that the proposed flow control methodology consistently outperforms on-off control, achieving a maximum 13.56% increase in useful heat under optimal conditions.
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