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1)  Solid adsorption storage
固体吸附蓄冷
1.
Solid adsorption storage technology is presented.
介绍了目前空调工程中常用的蓄冷技术及其各自特点,分析了固体吸附蓄冷技术及其应用。
2)  solid adsorption refrigeration
固体吸附式制冷
1.
The preliminary discussion on application of theory of fractal in solid adsorption refrigeration systems;
分形理论在固体吸附式制冷系统中的应用研究
2.
Adsorbent bed is a core component in solid adsorption refrigeration system.
固体吸附式制冷系统中核心部件是吸附床,由于床体内的吸附剂是多孔介质,床体与吸附剂之间接触热阻大,所以热传导能力差。
3.
Currently,the study of the solid adsorption refrigeration employing ship waste heat focuses on fishing vessels,while the study of the solid adsorption refrigeration on ocean ship still settles on primary assumption,theoretical derivation or computer simulations.
本文探讨了利用远洋船舶柴油机余热进行固体吸附制冷的可行性,并提出了摸拟船舶余热的固体吸附式制冷实验系统的设计方案。
3)  solid adsorption refrigeration
固体吸附制冷
4)  solid adsorption
固体吸附
1.
Research status and progress of solid adsorption desiccant air conditioning system;
固体吸附式除湿空调系统及其研究进展
2.
For the solar energy solid adsorption rotary refrigeration system using activated carbon fiber-ethanol as its pair,one-dimensional uniform pressure field mathematical model along the circumference of adsorbent bed was adopted to carry out a static simulation calculation of the temperature field of the adsorption wheel bed.
针对活性炭纤维-乙醇太阳能固体吸附式转轮制冷系统,采用沿吸附床周向的一维均匀压力场数学模型,对转轮吸附床温度场进行了静态模拟计算;从吸附床的内、外部特性参数出发,全面而系统地分析了这些参数的改变对系统性能、平衡脱附率以及吸附量的影响。
3.
A review and a comprehensive analysis was made of the research and application of the solid adsorption heat storage technology, the key problem of solid adorption heat storage technology was put forward, research progress of ad- sorption heat storage workong pairs and optimization of mass and heat transfer through the heat storage beds was clarified.
对国内外吸附蓄热研究现状进行了回顾和综合分析,提出了固体吸附蓄热技术的关键问题,重点阐述了吸附畜热工质对和蓄热床传热传质优化的研究进展。
5)  numerical simulation/solid absorbent cooling system
数值模拟/固体吸附制冷
6)  solid adsorbent
固体吸附剂
1.
The new solid adsorbents for desulfurization of fluid catalytic cracking gasoline were reviewed.
指出吸附剂吸附选择性和吸附容量的提高和吸附机理的深入研究是脱硫固体吸附剂研究的重要方向。
2.
To enhance the liquid dehumidification ability,this presents paper the research from two sides:improvement of the dehumidifier by introducing solid adsorbent on its surface;and the use of mixed solution as liquid desiccant.
为了提高溶液除湿能力,本文介绍了从除湿器和除湿溶液两个方面进行改进的研究结果:利用固体吸附剂对溶液除湿器表面进行了处理;利用混合溶液作为溶液除湿剂。
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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