adsorption bed

网络  吸附床

化学



双语例句

  1. Yuan Shikai quickly seized the fruits of the victory of the 1911 Revolution.
    袁世凯迅速篡夺了辛亥革命的胜利果实。
  2. Experimental Research on the Head Loss of the Filter and the Adsorption Bed
    过滤池和吸附床水头损失的实验研究
  3. Mass transfer kinetics of dehumidification in an adsorption bed during close air circulation have been investigated utilizing silica and4A molecular sieves.
    用硅胶和4A分子筛吸附剂进行气流封闭循环实验,对吸附床的除湿传质动力学进行了研究。
  4. The conclusions of this work show that the thermodynamic process in adsorption bed is decided by the coupling effect of the heat and mass transfer, furthermore, mass transfer is decided by heat transfer.
    研究表明,吸附床内的热力学过程是传热传质交叉耦合效应共同决定的过程,并且传热决定传质。
  5. By analyzing the heat transfer effect of the adsorption bed, the good results were drawn with this adsorption bed structure.
    通过对吸附床传热效果的分析指出该吸附床结构有较好的传热效果。
  6. Thermodynamic calculating model of adsorption bed in the adsorption solar refrigeration equipment was established.
    建立了吸附式太阳能制冷装置的吸附床热力计算模型。
  7. Determination of Mass Transfer Coefficient in Liquid-Solid Adsorption Bed by Pulse Chromatographic Method
    用脉冲色谱法测定液固吸附床层内的传质系数
  8. Numerical simulation and heat transfer analysis of temperature field for adsorption bed of solar energy adsorption refrigeration air conditioner
    太阳能吸附制冷空调吸附床温度场数值模拟与传热分析
  9. Effect of Adsorption Bed Inner Characteristic on Solid Adsorption Refrigeration System with Rotating Wheel Driven by Solar Energy
    吸附床内部特性对固体吸附式转轮太阳能制冷系统的影响
  10. Thermodynamic calculating method of adsorption bed in the solar adsorption refrigeration system
    太阳能吸附式制冷吸附床的热力计算方法
  11. In the refrigeration research field with solar energy, it has provided the important theory basis to optimize the adsorption bed design, enhances the coefficient of system performance, and causes the solar powered rotary adsorption refrigerator to step to the market.
    在太阳能制冷研究领域,对优化吸附床设计,提高系统的性能系数,使太阳能驱动的转轮吸附式制冷机械迈向市场,提供了重要的理论依据。
  12. The longer breakthrough time and larger temperature variation in the adsorption bed were attributed to the higher adsorption pressure.
    实验结果表明随着吸附压力的增加氮气和甲烷在吸附床上的穿透时间延长,由于吸附热效应的影响使得吸附床内的温升幅度随之加大;
  13. The adsorption performance of various adsorbents for radioactive I and CH_3Iis studied by means of stationary adsorption bed.
    本工作采用固定吸附床方法,研究了不同吸附剂对元素碘和***的吸附性能。
  14. It offers the evidence for further analysis of dynamic characteristic in adsorption bed and the optimizing system design.
    这为进一步分析吸附床内的动态特性,优化系统设计提供了依据。
  15. By considering the internal and external characteristic parameters of the adsorption bed, the influence from these parameters change being on system performance and the equilibrium desorption ratio and adsorbent mass effect was analyzed systemically and completely.
    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。
  16. The design and strengthen method of adsorption bed in adsorption refrigeration
    吸附制冷中吸附床的设计及强化措施
  17. In order to recognize the flow characteristics in a tapered affinity adsorption bed, FLUENT software was used in numerical simulation for the liquid-solid two phases flow. A two-fluid model of the liquid-solid in the ( tapered) bed was established based on the theory of two-phase flow.
    为了分析流体在上流锥形亲和层析床中的复杂流动情况,运用二相流理论建立了上流锥形床中液固二相流模型,对上流锥形床中的流动状况进行了数值模拟。
  18. Measurement of gas concentration distribution in adsorption bed
    吸附床内气体浓度分布的测定
  19. Design and numerical simulation of the adsorption bed of solar energy solid adsorption refrigeration
    太阳能固体吸附式制冷吸附床的设计及数值模拟分析
  20. Material invariableness calculation is performed for the process of wastewater passing through fixed adsorption bed, and the equation of penetration locus is derived.
    对废水通过固定吸附床的过程进行了物料衡算,确定了穿透曲线方程。
  21. The dynamic behavior of temperature and concentration in the bed and effects of operating parameters on performance of process were discussed, including adsorption time, height of adsorption bed, feed flow rate and purge-feed ratio.
    在此基础上探讨了变压吸附过程中床层内温度和体积分数的动态行为,考察了吸附时间、吸附床高度、进气流速、清洗比等工艺参数对过程性能的影响。
  22. There is not a strict design standard for adsorption bed, so at the base of adsorption refrigeration design experience, I design shell and pipe type adsorption bed which is very beneficial to put the working pairs into the bed and certain bearing press ability.
    吸附床的设计目前没有一个严格的设计标准,本文总结吸附式制冷的设计经验,特设计出了壳管式的吸附床,这样的吸附床有利于工质的装填和具有一定的承压能力。
  23. It is revealed that the product purity, recovery, and the temperature profile along the adsorption bed reached steady state after 30 cycles.
    模拟计算表明,在30个循环以后变压吸附循环过程的产品纯度和回收率以及吸附床中的温度变化都已经达到稳定状态。
  24. 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。
  25. Determination of design parameters of slag adsorption bed for wastewater treatment in printing and dyeing process by means of micro-electrolysis
    内电解法处理印染废水中炉渣吸附床设计参数的确定
  26. Adopting cryosorption vacuum system as the pressure recovery system of COIL, the pressure recovery capability of cryosorption vacuum system is determined directly by the performance of adsorption bed.
    采用低温真空吸附系统作为氧碘化学激光器的压力恢复系统,吸附床的吸附性能决定着低温真空吸附系统的压力恢复性能。
  27. The optimized adsorption operation conditions for molecular sieve 13X: Temperature of the adsorption bed is 200 to 230 ℃;
    利用13X型分子筛得到优化的工艺条件:吸附床层温度:200~230℃;
  28. And the concentration distribution of the adsorption process within the adsorption bed was studied, the results are good coordinate with the experiment results.
    并对吸附过程中吸附床内部的浓度分布及吸附机理进行了深入的分析,模拟结果与实验数据及理论讨论相吻合。
  29. This is because at the end of the process, the adsorption bed temperature is closed to heat source temperature. When it is suddenly switched to the working condition, absorbent temperature only can reduce down slowly after the bed temperature decreases.
    这是因为脱附过程结束时,吸附床温度接近热源温度,突然切换到吸附工况,吸附剂温度只有在床体温度降低后缓慢降低。
  30. Combining adsorption refrigeration with the highly efficient heat transfer characteristics of heat pipe technology will improve the performance of the adsorption bed.
    将热管技术应用到吸附式制冷中,利用其高效传热的特性可以强化吸附床传热。