He enjoyed the tranquillity of village life. 他非常享受乡村生活的宁静。
In order to improve the heat transfer and adsorption rate of the adsorbent bed used for adsorption refrigeration system, a consolidated composite adsorbent mainly made of active carbon is presented. 以活性炭-甲醇作为工质对,采用静态重量法对其进行吸附等温线测定,目的在于研究该工质对与吸附制冷相关的吸附率、吸附速度和吸附热等性质。
Both sensible heat and adsorption heat of adsorbent bed can be recovered efficiently and easily. 该装置能有效地回收太阳固体吸附式制冷循环中吸附床的显热及吸附热,且操作简便。
Numerical Simulation of the Heat Transfer Process of the Adsorbent Bed in the Solid Adsorption System 固体吸附式制冷系统中吸附床传热过程的数值模拟研究
Experimental Studies on a Solar Ice Maker with New Structure of Adsorbent Bed 新型吸附床太阳能冰箱的实验研究
The biomass transmission index ( BTI) obtained through the biomass pulse response experiment was used to quantitatively evaluate the biomass/ adsorbent interaction in expanded bed. 通过生物质脉冲响应实验获得生物质穿透指数(BTI),用来定量评估生物质/吸附剂间相互作用。
Analysis of Dynamics of Depressurization for Adsorbent Bed 吸附床降压过程的动力学分析
Study on Refrigerating System for Adsorbent Fluidized-bed Freeze Dryer 吸附式流化床冷冻干燥装置制冷系统研究
The adsorbent bed is the key component in the adsorption refrigeration system. It is filled with the adsorbent. The refrigerant flows in the absorbent and can generate phase change. 吸附床是吸附式制冷系统中的关键部件,其内充填着固体吸附剂,吸附剂内部有制冷剂流动,制冷剂本身又存在气&液相变的问题,这是一个相当复杂的传热传质问题。
Analysis of Heat and Mass Transfer of Single Tube in the Adsorbent Bed of Solar Solid Adsorption Refrigeration System 太阳能固体吸附式制冷系统吸附床内单元管传热传质分析
Research of Enhanced Heat Transfer Models of Tube Adsorbent Bed 管式吸附床强化传热结构的研究
Numerical Simulation and Analysis of the Heat and Mass Transfer in the Adsorbent Bed of Single Tube Adsorption Refrigeration Unit Tube 吸附式制冷单管吸附床传热传质的数值模拟及分析
This article is the first time that used FLUENT to simulate the temperature of adsorbent bed. 本文首次利用FLUENT软件模拟吸附床层温度。
Numerical Solution of Heat and Mass Transfer Mathematical Model for Adsorbent Bed in Adsorption Refrigeration System 吸附式制冷吸附床内传热传质数学模型的数值求解
Theoretical simulation shows that such an evacuated tube adsorption cooling system with zeolite-water or active carbon-methanol working pair has a better performance than that with conventional plate adsorbent bed. 这两种系统均具有较高的制冷性能,前者宜以沸石-水为制冷工质对,而后者则宜采用活性碳-甲醇工质对。
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。
So the absorbent thermal conductivity should be increased as far as possible to enhance heat transfer efficiency of the adsorption bed and improve the heat transfer efficiency of adsorbent bed. 因此为了提高吸附床传热效率,应尽量增大吸附剂的导热系数,以及采取多种措施强化吸附床的传热效率。
Preparation of Spherical Cellulose/ TiO_2 Composite Adsorbent for Expanded Bed Adsorption and Its Application to Purification of Proteins 球形纤维素/钛***复合扩张床吸附剂的制备及其在蛋白质纯化中的应用
The COP of the solar cooling tube is about ( 0.24)~( 0.28) when using the compound adsorbent Z2 in adsorbent bed. 将配置的复合吸附剂Z2应用于太阳能冷管,其制冷系数COP约为0.24~0.28。
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;
Two kinds of typical adsorbent bed used in chemical adsorption refrigeration are described. Based on the above analysis, a new type structure of adsorbent bed is designed. 分析比较了两种用于化学吸附制冷的典型吸附床结构,在此基础上设计了一种新型的吸附床。
Influence of cell homogenization on interactions between biomass and adsorbent in expanded bed ion-exchange adsorption 细胞破碎对离子交换扩张床吸附中生物质与吸附剂间相互作用的影响
The numerical simulation results show that the coefficient of adsorbent have important effect on adsorbent bed temperature while the flow rate and the temperature of heat transfer fluid of the adsorbent bed have little effect on the bed temperature. 结果表明,吸附剂的物性参数对床层温度分布影响显著;换热流体流速、温度对床层温度影响不大。
The result shows that at constant evaporating pressure the refrigerating capacity changed with the heat flow into the adsorber and the heat transfer mainly controls the mass transfer in the adsorbent bed. 结果表明,在恒定蒸发压力下,制冷能力随进入发生器的热流变化,吸附床内的传质过程主要受传热过程影响。
The conclusion provides the reference to design in g enhanced heat transfer tube adsorbent bed. 分析的结果可以对今后管式吸附床的强化传热结构设计提供参考。
The result show that: the method that bonding adsorbent and adsorbent bed by adhesive is feasible, and it can effectively reduce the thermal contact resistance between adsorbent and metal heat exchanger surface. 4. 结果表明:利用胶粘剂粘结吸附剂与吸附床的方法可行,且能够有效地减少吸附剂与金属换热面间的接触热阻。
However, poor heat transfer performance of adsorbent bed and the low efficiency of the system limit the application and development of adsorption refrigeration. 然而吸附床传热性能差,系统制冷效率低,限制了吸附式制冷的应用和发展。
In this paper, mainly about how the waste heat recovery of the acetone recovery system in the adsorbent bed had been complete, the project has been implemented to achieve good economic and social benefits. 本文主要完成了丙酮回收系统中吸附床的余热回收和利用的研究,该研究项目被实施后取得良好的经济与社会效益。
Designed an adsorption refrigeration system based on the split heat pipe adsorbent bed. Designed and calculated for the evaporator and condenser considering with actual situation. 3. 在应用分离式热管吸附床的基础上,对吸附制冷系统进行了设计,并结合本设计实际情况对冷凝器、蒸发器进行了设计和计算。
Through numerical simulations, effects of the adsorbent bed configuration, thermal conductivity and permeability of the adsorbent are analyzed. Some technologies of heat transfer intensification are revalued. 7. 通过吸附床内传热传质的数值模拟,分析了吸附床结构、吸附剂的传热系数和透过度对系统性能的影响,一些有关吸附床的强化传热技术被重新评价。