Numerical analysis of heat and mass transfer in the adsorbent bed ispresented, transient distribution of pressure, temperature, velocity and adsorption in it is obtained.6.
5. 对吸附床的传热传质规律进行了数值分析,获得了吸附床内部的瞬时温度压力、吸附质速度、吸附率分布,并通过实验数据验证了数学模型。
参考来源 - 化学吸附式制冷系统的数值模拟和实验研究This paper presents a method using heat pipes to enhance the heat transfer performance of the adsorbent bed,and to improve the adsorption refrigerating system efficiency.
本文用高效传热元件热管来强化吸附床传热,提高其传热性能和系统制冷效率。
参考来源 - 热管式吸附床在船舶吸附式制冷中的应用研究·2,447,543篇论文数据,部分数据来源于NoteExpress
A well designed adsorbent bed is very important to an adsorption refrigeration system.
吸附床是吸附式制冷系统的核心部件。
In the adsorption refrigeration system, three enhanced heat transfer models of tube adsorbent bed are designed.
介绍了吸附式制冷系统中吸附床的三种强化传热模型结构设计方案。
The numerical simulation of adsorbent bed has adopted one-dimensional uniform pressure field model along the circumference.
吸附床的数学模拟采用沿吸附床周向的一维均匀压力场模型。
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