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1)  efficiency of ice storeage
蓄冷效率
1.
Based on the local meteorological conditions,the relationship of efficiency of ice storeage in winter utilizing conical ice between ice storeage and radius of conical ice.
根据当地气象资料,模拟计算出在冬天采用柱形冰堆蓄冷的蓄冷效率与柱形冰堆半径之间的关系,予以实际应用可得到很好的经济效益和社会效益。
2)  Ice storage velocity
蓄冷速率
3)  cool storage rate
蓄冷率
1.
The influences to initial investment,operating expenditure,as well as overall annual cost of the ice storage air conditioning system by such factors as cool storage rate,peak-and-valley electrical price pattern and types of ice storage system are analyzed.
介绍了冰蓄冷空调系统的策略,通过建立冰蓄冷空调系统的经济性模型,进行了经济性优化计算,分析了蓄冷率、峰谷电价比、电力增容费和蓄冷方式等因素对冰蓄冷空调系统在初投资、运行电费和总费用方面的影响。
4)  storage rate
蓄冷率
1.
Impact of ice storage rate on the system economic effects and determination of its optimum;
蓄冷率对冰蓄冷空调系统经济性的影响及最佳蓄冷率的确定方法
2.
Based on the traditional methods of economic analysis for cool storage system, the paper takes into account the initial investment, operation cost of additional equipment and the management cost of system, analyses the impacts of storage rate upon economical performance combined with a typical project example.
以一典型工程为例 ,分析了蓄冷率对系统经济性的影响 ,得出了蓄冷率与系统初投资、年运行费用及投资回收期的关系曲
5)  energy storage efficiency
蓄能效率
1.
This paper described the reasons of the energy loss during working cycles of a rubber bag accumulator,and found out an optimum working cycle corresponding to maximum energy storage efficiency of the accumulator.
本文首先从理论上分析了常用皮囊式蓄能器的蓄能机理以及能量损失产生的原因,找到了对应最大蓄能效率的蓄能器理想工作过程。
6)  the store efficiency of ice
蓄冰效率
补充资料: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。

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