暖通空调>期刊目次>2026年>第1期

区域供冷系统能效分析(4):冰蓄冷溶液系统设计与运行优化

Energy efficiency of district cooling systems (4): Design and operation optimization of ice storage brine systems

胡 勣 王朝晖 旷金国 许 健
深圳市前海能源科技发展有限公司,深圳

摘要:

根据系列文章提出的基于功耗冷热比相似准则得到的量纲一系统能效模型,进一步得到了溶液系统传输影响系统能效的模型,并得到了不同蒸发器进口溶液温度和设计工况管路阻力下的最优溶液进出口温差计算式。计算结果表明:以乙二醇溶液为例,制冰模式设计工况下,对于常规设计工况管路阻力为40 m的系统,在蒸发器设计进口乙二醇温度为-1.80 ℃时,优化进出口温差为5.76 ℃,比常规设计的进出口温差(3.80 ℃)高1.96 ℃,通过降低乙二醇流量,提升进出口乙二醇温差,优化设计系统COP提高至3.34,比常规设计系统COP高7.1%;对于设计工况管路阻力为20 m的系统,优化温差设计对能效提升效果不明显。在制冰运行过程中,制冷机制冷温度从5.5 ℃降低到-5.6 ℃,需要不断调节乙二醇流量实现优化运行,对于管路阻力系数大的系统尤其明显。

关键词:冰蓄冷;区域供冷;溶液系统;优化温差;功耗冷热比;相似准则;系统能效

Abstract:

Based on the dimensionless system energy efficiency model developed by the authors, the impact model of brine transport on the system energy efficiency is further developed, and the optimal brine inlet and outlet temperature difference calculation formula under different evaporator inlet brine temperatures and design condition pipeline resistances is obtained. The calculation results show that, taking ethylene glycol brine as an example, under the design conditions of the ice-making mode, for a system with a pipeline resistance of 40 m under conventional design conditions, when the design inlet ethylene glycol temperature is -1.80 ℃, the optimized inlet and outlet temperature difference is 5.76 ℃, which is 1.96 ℃ higher than the conventional design inlet and outlet temperature difference (3.80 ℃). By reducing the ethylene glycol flow rate and increasing the inlet and outlet ethylene glycol temperature difference, the optimized system COP is increased to 3.34, which is 7.1% higher than that of the conventional design system. For a system with a pipeline resistance of 20 m under design conditions, the effect of optimized temperature difference design on energy efficiency improvement is not significant. During the ice-making operation process, when the refrigeration temperature of the refrigerator drops from 5.5 ℃ to -5.6 ℃, it is necessary to continuously adjust the ethylene glycol flow rate to achieve optimized operation, which is especially obvious for the systems with a large pipeline resistance coefficient.

Keywords:ice storage; district cooling; brine system; optimized temperature difference; power consumption to heat supply ratio; similarity criterion; system energy efficiency

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