1)ice storage system冰蓄冷系统
1.Design of the ice storage system for Shanghai Science Land;上海科技城冰蓄冷系统设计
2.Optimal control strategy for ice storage systems;冰蓄冷系统的优化控制分析
3.Advancements of ice making with direct contact solid liquid phase change and ice storage system;直接接触固液相变制冰及冰蓄冷系统的研究进展
英文短句/例句
1.The Temperature Characteristics of the Ice Storage Tank in Ice Storage System刮刀式冰蓄冷系统蓄冰槽温度特性研究
2.DETERMINATION OF ICE-STORAGE RATE AND IMPACT OF IT ON THE SYSTEM ECONOMIC EFFECTS蓄冷率的确定及其对冰蓄冷系统经济性的影响
3.Optimal Operation of Ice Harvester System Based on Weekly Circular Running Strategy;冰片滑落式冰蓄冷系统基于周蓄冰策略下的优化运行
4.Operation of Dynamic Ice Thermal Storage System without Pre-heatingd动态冰蓄冷系统的无预热制冰运行研究
5.OPERATION OF DYNAMIC ICE THERMAL STORAGE SYSTEM WITHOUT PRE-HEATING过冷水式动态冰蓄冷系统的无预热运行
6.The Study on Heat Transfer Characteristic of Ice-On-Coil and Economic Analysis of Ice Thermal Storage System;蓄冰盘管传热性能研究与冰蓄冷系统经济性分析
7.Optimal Operation of Ice Storage System for HVAC in Consideration of Cooling Load Behavior;考虑负荷影响的空调冰蓄冷系统的优化运行
8.Application of Ice Storage System to Residential Buildings in ShangHai;冰蓄冷系统在上海住宅建筑中的应用研究
9.Nucleation characteristics of nano-additives in binary ice thermal storage system二元冰蓄冷系统中的纳米添加剂成核特性研究
10.Freezing and Melting Process Research of Ice Thermal Storage Air-conditioning System;冰蓄冷空调系统蓄冷释冷过程的研究
11.Ice Storage Air Canditioning System and New Strategy of Runing Control蓄冰制冷空调系统及运行控制新策略
12.Study on Comparison of Control Strategy on Ice Storage Air-conditioning System冰蓄冷空调系统控制策略的比较探讨
13.Analysis of the Operation of Minitype Ice Harbors Cold Air-conditioning System小型冰蓄冷空调系统运行方式的分析
14.Evaluation system and its application for ice-storage air conditioning systems冰蓄冷空调系统的评价方法及其应用
15.Ice Thermal Storage Technology in DHC冰蓄冷空调技术在区域供冷系统中的应用
16.Optimal Control Research Based on Cooling Load Prediction in Ice Storage Air-conditioning System;基于负荷预测的冰蓄冷空调系统优化控制研究
17.Study on Economic Analysis and Optimization to Ice Storage Air-conditioning System;冰蓄冷空调系统的经济性分析与优化研究
18.The Characteristics Analysis and Experimental Research on Residential Ice Storage Air Conditioning System;小型冰蓄冷空调系统特性分析与实验研究
相关短句/例句
Ice-storage system冰蓄冷系统
3)ice-storage air-conditioning system冰蓄冷空调系统
1.Economy analysis and comparison of ice-storage air-conditioning system for an office building;某办公建筑冰蓄冷空调系统经济性分析与比较
4)Ice-storage air conditioning system冰蓄冷空调系统
1.Application of breath bag to ice-storage air conditioning systems;冰蓄冷空调系统中"呼吸袋"的应用
2.The predictive neural network system’s three successful applications to the terminal control of HVAC system, the energy management control system in a central HVAC plant and the ice-storage air conditioning system introduced in the article show its bright future in the field of HVAC.从神经网络的结构及特点出发,说明了神经网络预测控制系统的构造及工作原理,并着重通过介绍神经网络预测控制在HVAC系统末端控制、中央制冷站能源管理系统、冰蓄冷空调系统中的应用,展观了它在HVAC系统中广泛的应用前景。
3.Then,the equivalent day in the design ice-storage rate of the ice-storage air conditioning system is calculated.本文所提出的折算天数法,将空调季的非设计日工况折合成设计日工况,并计算得到冰蓄冷空调系统在相应设计蓄冷率下的空调季折算天数,建立实例工程模型,利用设计日工况和相应的折算天数对实例工程进行整个空调季的经济性分析,以确定合适的设计蓄冷率范围。
5)ice storage air-conditioning system冰蓄冷空调系统
1.Taking an office building in Tianjin for example,the economy of ice storage air-conditioning system and conventional air-conditioning system is compared.以天津某办公大楼为例,比较冰蓄冷空调系统和常规空调系统的经济性。
2.Facing this kind of situation, many district government formulate electric-price policy which is benefit to the development of Ice Storage Air-conditioning System(ISAS).由于冰蓄冷空调系统在我国发展的时间并不长,有许多问题值得研究。
6)ice storage air conditioning system冰蓄冷空调系统
1.Optimized design of an ice storage air conditioning system;某冰蓄冷空调系统优化设计探讨
2.Superiority and application of a combined water-source heat pump and ice storage air conditioning system水源热泵与冰蓄冷空调系统联合运行的优越性及应用
3.Presents the ice storage air conditioning system design, obtains various economic indexes through comparison, and considers that development of ice storage systems depends on the national policy of electric power industry.详细介绍了电力部国家电网控制中心工程的冰蓄冷空调系统设计,通过技术比较得出各项经济指标,认为蓄冰空调的发展有赖于国家电力政策的倾斜。
延伸阅读
蓄冷器(regenerator)蓄冷器(regenerator)是一种回热式热交换器,在低温循环中,它与热交换器的功能相同,即通过热量的交换,达到积蓄冷量的目的。蓄冷器只有一个通道。冷、热流体分别交替通过,它的传热过程在时间上分为加热与冷却两个阶段。在加热阶段,热流体通过蓄冷器,使蓄冷器中填料被加热,同时流体被冷却;在冷却阶段,冷流体反向通过蓄冷器,使蓄冷器填料被冷却而流体被加热,由于它在冷却热流体的过程会产生低温的物理吸附,使流体得到纯化。它的填料可用铜丝绒、不锈钢丝绒、小铅丸、铝矾及硫化铕等。它的比表面积可达3000~6000m2/m3,热交换的效率可达99,流阻小,流体经过时的压降也小,在液化器和气体制冷机中被广泛的使用。
