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An optimal differential pressure reset strategy based on the most unfavorable thermodynamic loop on-line identification for a variable water flow air conditioning system

机译:基于最不利的热力回路在线识别的可变水流量空调系统最优差压复位策略

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The variable differential pressure (DP) set-point control strategy has become the main energy-saving measure for central air conditioning water system variable volume adjustment. In optimal operation control, it is critical to use the right reference object to implement global, accurate, and online control. In mainland China, the most unfavorable loop is typically used as the reference object for variable DP set-point control in the majority of cases of variable volume air conditioning system adjustment. However, its concept and feasibility require further clarification. First, this paper analyzes the difference in the characteristics of a most unfavorable loop under air conditioning design work conditions versus under operational conditions. Under design operational conditions, the referenced most unfavorable hydraulic loop only reflects the distribution of the pipe network's hydraulic characteristics, whereas under system operational conditions, the variable volume adjustment strategy should be chosen according to each user's load requirement, i.e., a most unfavorable thermodynamic loop. Then, this paper provides definitions of the most unfavorable thermodynamic loop and online identification method and proposes a variable DP set-point optimal reset strategy based on the maximum valve position loop's optimal reset valve position domain and best valve position domain. Finally, the variable DP set-point control of a primary pump variable volume air conditioning water system in an industrial factory is used as an example to conduct a test studying 6 variable DP or constant DP control strategies, including the method proposed in this paper. The test results show that the most unfavorable loop-based variable DP control strategy saves 47-58% water pump power consumption (up to 985 kWh electric power consumption per day) when compared with the conventional variable DP control strategy, whereas the most unfavorable thermodynamic loop-based variable DP control strategy is more advantageous in ensuring the overall cooling energy supply for each user. (C) 2015 Elsevier B.V. All rights reserved.
机译:可变压差(DP)设定点控制策略已成为中央空调水系统可变容量调节的主要节能措施。在最佳操作控制中,至关重要的是使用正确的参考对象来实现全局,准确和在线控制。在中国大陆,在大多数可变容积空调系统调节情况下,最不利的回路通常用作可变DP设定点控制的参考对象。但是,其概念和可行性需要进一步阐明。首先,本文分析了空调设计工作条件与运行条件下最不利回路的特性差异。在设计运行条件下,所引用的最不利的液压回路仅反映了管网的液压特性的分布,而在系统运行条件下,应根据每个用户的负载需求选择可变的体积调节策略,即最不利的热力学回路。然后,本文提供了最不利的热力学回路的定义和在线识别方法,并基于最大阀位置回路的最佳复位阀位置域和最佳阀位置域,提出了一种变量DP设定点最佳复位策略。最后,以某工厂主泵可变容积空调水系统的变量DP设定点控制为例,对6种变量DP或恒定DP控制策略进行了测试,包括本文提出的方法。测试结果表明,与传统的可变DP控制策略相比,最不利的基于环路的可变DP控制策略可节省47-58%的水泵功耗(每天高达985 kWh电耗)。基于回路的可变DP控制策略在确保为每个用户提供整体冷却能量方面更具优势。 (C)2015 Elsevier B.V.保留所有权利。

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