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Energy modeling and optimization of building condenser water systems with all-variable speed pumps and tower fans:A case study
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作者 Yong Cao Chuang Wang +2 位作者 Sheng Wang Xiao Fu Xinguo Ming 《Building Simulation》 SCIE EI CSCD 2024年第7期1085-1111,共27页
The emergence of building condenser water systems with all-variable speed pumps and tower fans allows for increased efficiency and flexibility of chiller plants in partial load operation but also increases the control... The emergence of building condenser water systems with all-variable speed pumps and tower fans allows for increased efficiency and flexibility of chiller plants in partial load operation but also increases the control complexity of condenser water systems.This study aims to develop an integrated modeling technique for evaluating and optimizing the energy performance of such a condenser water system.The proposed system model is based on the semi-physical semi-empirical chiller,pump,and cooling tower models,with capabilities of fully considering the hydraulic and thermal interactions in the condenser water loop,being solved analytically and much faster than iterative solvers and supporting the explicit optimization of the pump and tower fan frequency.A mathematical approach,based on the system model and constrained optimization technique,is subsequently established to evaluate the energy performance of a typical dual setpoint-based variable speed strategy and find its energy-saving potential and most efficient operation by jointly optimizing pumps and tower fans.An all-variable speed chiller plant from Wuhan,China,is used for a case study to validate the system model’s accuracy and explore its applicability.The results showed that the system model can accurately simulate the condenser water system’s performance under various operating conditions.By optimizing the frequencies of pumps and tower fans,the total system energy consumption can be reduced by 12%–13%compared to the fixed dual setpoint-based strategy with range and approach setpoints of 4℃and 2℃.In contrast,the energy-saving potential of optimizing the cooling tower sequencing is insignificant.A simple joint speed control method for optimizing the pumps and tower fans emerged,i.e.,the optimal pump and fan frequency are linearly correlated(if both are non-extremes)and depend on the chiller part load ratio only,irrespective of the ambient wet-bulb temperature and chilled water supply temperature.It was also found that the oversizing issue has further limited the energy-saving space of the studied system and results in the range and approach setpoints being inaccessible.The study’s findings can serve as references to the operation optimization of all-variable speed condenser water systems in the future. 展开更多
关键词 all-variable speed chiller plant model-based optimization hydraulic and thermal coupling analytical solution dual setpoint-based variable speed control optimal joint speed control
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全变频冷冻站技术在上海某商办楼项目中的应用
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作者 翁政军 《山西建筑》 2017年第27期160-161,共2页
介绍了上海市某商办楼制冷站采用的全变频控制系统,即冷冻站中的冷冻机、水泵和冷却塔风扇全部变频调速,着重介绍了超高效全变频制冷站技术哈特曼控制回路的特点,为正在评估全变频冷冻站技术的设计师提供借鉴。
关键词 全变频冷冻站 哈特曼控制算法 节能
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高铁客站空调系统冷水机组设计能耗预测 被引量:1
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作者 张亚静 朱建章 《暖通空调》 2023年第7期1-6,共6页
目前全年空调能耗一般通过性能化模拟得出,其模拟需要准确的边界条件,且计算过程烦琐,而众多大、中、小型高铁客站冷负荷采用典型设计日进行计算,无法给出全年空调系统设计预测能耗和实际运行能耗.本文利用综合部分负荷性能系数(IPLV)... 目前全年空调能耗一般通过性能化模拟得出,其模拟需要准确的边界条件,且计算过程烦琐,而众多大、中、小型高铁客站冷负荷采用典型设计日进行计算,无法给出全年空调系统设计预测能耗和实际运行能耗.本文利用综合部分负荷性能系数(IPLV)的概念,以夏热冬冷地区某高铁客站为例,分析并给出了其冷水机组不同负荷率下的COP和运行时长的计算方法.在设计阶段对能耗进行相对准确的简单估算,为实现定量控制空调系统能耗及碳排放目标提供支持. 展开更多
关键词 高铁客站 冷水机组 综合部分负荷性能系数(IPLV) 非标准部分负荷性能系数(NPLV) 能耗预测
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全变频冷冻站及其控制策略-Hartman Loop^(TM)介绍 被引量:2
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作者 董奇 姜卫东 史洪伟 《制冷技术》 2007年第4期26-28,共3页
现在,主流冷冻机制造商都向市场推出了系列完整的离心式水冷变频冷冻机,大家正在接受全变频冷冻站的概念即冷冻站中的冷冻机、水泵和冷却塔风扇全部变频调速。此文目的是为正在评估全变频冷冻站技术的设计师和机电经理们提供一些有用信... 现在,主流冷冻机制造商都向市场推出了系列完整的离心式水冷变频冷冻机,大家正在接受全变频冷冻站的概念即冷冻站中的冷冻机、水泵和冷却塔风扇全部变频调速。此文目的是为正在评估全变频冷冻站技术的设计师和机电经理们提供一些有用信息,帮助他们有效的完成这项技术。 展开更多
关键词 全变频冷冻站 Hartman Loop^TM CONTROL
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