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adsorption refrigeration     
相关语句
  吸附制冷
     Adsorption refrigeration volume of M1-9906-water pairs is 2.0~2.5 times that of 13X-water.
     M1-9906-水工质对的吸附制冷量是13X-水的2.0~2.5倍;
短句来源
     Regenerated at temperature of 60~120℃, adsorption refrigeration volume of M4-0132-water pairs is 441~924kJ?
     在60~120℃再生条件下,M4-0132-水工质对的吸附制冷量为441~924kJ?
短句来源
     Principles,technical points and research progress of solar powered adsorption refrigeration had been introduced briefly and its applications prospects also been analyzed.
     本文概要介绍了太阳能吸附制冷技术的原理、特点和研究进展 ,且与现有的几种太阳能制冷技术进行了比较 ,并对其应用前景作了分析和展望。
短句来源
     The results showed that SrCl_2-NH_3 is an excellent working pair in its large adsorption refrigeration capacity per unit weight of adsorbent and suitable for solar energy and low grade waste heat.
     研究结果表明 ,SrCl2 NH3 工质对的吸附制冷量大 ,适宜太阳能或低品位余热驱动 ,是性能优良的工质对。
短句来源
     The results showed that CaCl 2-NH 3 is an excellent working pair in its large adsorption refrigeration capacity per unit weight of adsorbent and the suitability to solar energy and low grade waste heat.
     研究结果表明 ,CaCl2 —NH3工质对的吸附制冷量大 ,适宜太阳能或低品位余热驱动 ,是性能优良的工质对。
短句来源
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  吸附式制冷
     (5) Prototypical performance COP may reach 0.3016,the mean value is 0.2331. the experiments proved the car engine afterheat adsorption refrigeration is feasible.
     (5) 样机的性能COP最大可达0.3016,平均值为0.2331,试验证明轿车发动机余热吸附式制冷是可行的。
短句来源
     ANALYSIS OF SOLID ADSORPTION REFRIGERATION CYCLE
     固体吸附式制冷循环分析
短句来源
     ADSORPTION REFRIGERATION: A NEW REFRIGERATION TECHNOLOGY
     吸附式制冷新技术
短句来源
     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
短句来源
     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
短句来源
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  吸附式
     RESEARCH ON ADSORPTION REFRIGERATION WORKING PAIRS OF C_aCl_2-CH_3OH
     CaCl_2-CH_3OH吸附式制冷的特性研究
     (5) Prototypical performance COP may reach 0.3016,the mean value is 0.2331. the experiments proved the car engine afterheat adsorption refrigeration is feasible.
     (5) 样机的性能COP最大可达0.3016,平均值为0.2331,试验证明轿车发动机余热吸附式制冷是可行的。
短句来源
     ANALYSIS OF SOLID ADSORPTION REFRIGERATION CYCLE
     固体吸附式制冷循环分析
短句来源
     ADSORPTION REFRIGERATION: A NEW REFRIGERATION TECHNOLOGY
     吸附式制冷新技术
短句来源
     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
短句来源
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  吸附制冷的
     Experiment Study on the Adsorption Refrigeration in the Solar Cooling Tube
     太阳能冷管吸附制冷的实验研究
短句来源
     Experimental results show that the composite adsorbent has a good adsorption-desorption performance with the maximum adsorbance reaching 51.6% and the desorption reaching 69.3%. The coefficient of performance(COP) is 0.25,and the specific cooling power(SCP) is 0.072 W/g with the best performance composite adsorbent in the simulative refrigeration equipment,reaching the requirement of solar adsorption refrigeration.
     结果表明,复合吸附剂具有良好的吸附、解吸性能,最大吸附量达51.6%,解吸率可达69.3%,在模拟制冷装置上系统的制冷系数达0.25,单位吸附剂的制冷功率为0.072 W/g,符合太阳能吸附制冷的要求.
短句来源
     The experimental results show that the composite adsorbent has a good adsorption-desorption performance, and the maximum adsorbance is 46.93%. The COP is 0.25, and the SCP is 0.078w/g with the best performance composite adsorbent in the simulative refrigeration equipment, reaching the requirement of solar adsorption refrigeration.
     结果表明 ,复合吸附剂具有良好的吸附、解吸性能 ,最大吸附量达4 6 .93% ,在自制模拟装置上系统COP达 0 .2 5 ,SCP为 0 .0 78w g,符合太阳能吸附制冷的要求。
短句来源
     NUMERICAL SIMULATION AND EXPERIMENT STUDY OF ADSORPTION REFRIGERATION IN THE SOLAR COOLING TUBE
     太阳能冷管吸附制冷的数值模拟与实验研究
短句来源
     According to the characteristic attribute of adsorption refrigeration,the influence of the uniformity of temperature field on the adorption/desorption performance of adsorber was discussed by means of mathematics theory.
     根据吸附制冷的特性,从理论上研究了吸附床温度场均匀性对吸附/脱附性能的影响;
短句来源
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      adsorption refrigeration
    The aim of this study was to test the improvement of texture and nature of surface of active carbon for adsorption refrigeration system.
          
    A two-bed adsorptive prototype ice-making machine operating with a heat and mass recovery cycle has also been made for onboard adsorption refrigeration in fishing boats.
          
    It could be observed that non-equilibrium adsorption should be taken into account in adsorption refrigeration particularly for short cycle time and vacuum system.
          
    This paper shows the characteristic of temperature and adsorbed mass rate distribution in adsorber and some thermodynamic analysis on adsorption refrigeration cycle.
          
    The feature of non-equilibrium adsorption results of apparent different characteristic on adsorption refrigeration performance comparing with the case of equilibrium adsorption model.
          
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    The adsorption isotherms of water and ethanol vapors on the NaY,13X and 5 A zeolite molecular sieves were determined by gravimetric method in high vacuum at a range of temperature from 25℃ to 300℃.They were treated by Dubinin's theory of volume filling of micropores and from which the liquid- gas-zeolite stationary state equations were deduced.These equations can fairly describe the physicochemical properties of the liquid-gas-zeolite system for adsorption refrigeration.Then,the best liquid-zeolite couple...

    The adsorption isotherms of water and ethanol vapors on the NaY,13X and 5 A zeolite molecular sieves were determined by gravimetric method in high vacuum at a range of temperature from 25℃ to 300℃.They were treated by Dubinin's theory of volume filling of micropores and from which the liquid- gas-zeolite stationary state equations were deduced.These equations can fairly describe the physicochemical properties of the liquid-gas-zeolite system for adsorption refrigeration.Then,the best liquid-zeolite couple used for a given function was selected.The results show that the ethanol-zeolite system(such as ethanol-5A zeolite couple)may be used for cooling(low temperature,but low cooling production),however,water-zeolite system(such as water-NaY zeolite couple)may be considered in air-conditioning(relatively high temperature,but large cooling production).

    用高真空吸附重量法测定了水和乙醇在 NaY、13X、5A 等沸石分子筛上的吸附等温线,吸附温度范围从25℃到300℃。阐述了沸石分子筛用于吸附式制冷的吸附理论基础,根据液-气-沸石的稳态平衡方程对液体-沸石吸附体系制冷的物理化学性质进行了描述。按照不同用途的制冷要求对吸附体系进行了选择。发现乙醇液体-沸石体系(如乙醇-5A 体系)可用于小循环量的低温制冷如制冰、冷冻机等,而水-沸石体系(如水-NaY 体系)可用于大循环量的制冷如空调、冰箱等。

    The coefficient of performance (COP) of adsorption refrigeration cycle using activated carbon-methanol pair has been studied experimentally and theoretically in this paper. From the experimental research it is foumd that the values of COP depend on the condensing pressure of methanol vapor, the maximum desorpting temperature, the evaporating temperature and the adsorpting temperature. The COP reaches a maximum when the maximum desorpting temperature is about 100 degrees centigrade. Furthermore, a mathematical...

    The coefficient of performance (COP) of adsorption refrigeration cycle using activated carbon-methanol pair has been studied experimentally and theoretically in this paper. From the experimental research it is foumd that the values of COP depend on the condensing pressure of methanol vapor, the maximum desorpting temperature, the evaporating temperature and the adsorpting temperature. The COP reaches a maximum when the maximum desorpting temperature is about 100 degrees centigrade. Furthermore, a mathematical expression for COP is presented from the theoretical analysis, the experimental results and the values predicted by the COP expression have a good agreement.

    本文选用活性炭作吸附剂、甲醇作吸附介质,从实验和理论两方面研究了吸附式制冷间歇循环效率COP的变化规律。从实验研究的结果中可知,最高解吸温度、吸附温度、冷凝压力和蒸发温度等对COP有不同程度的影响。当最高解吸温度在100℃附近时,COP最大。从理论分析中。导出了COP的表达式,并且COP表达式的计算值与实验结果吻合得较好。

    In the present study, the basic theory, working process, and structure of molecular sieve adsorption refrigeration unit(MSARU) are described, and the refrigeration capacity refrigeration rate, and period of refrigeration of MSARU are experimentally measured and theoretically analysed. MSARU may be developed as the key element of air-conditioning equipment where the waste heal could be used as the power supply. The results given in this paper would provide the theoretical and experimental...

    In the present study, the basic theory, working process, and structure of molecular sieve adsorption refrigeration unit(MSARU) are described, and the refrigeration capacity refrigeration rate, and period of refrigeration of MSARU are experimentally measured and theoretically analysed. MSARU may be developed as the key element of air-conditioning equipment where the waste heal could be used as the power supply. The results given in this paper would provide the theoretical and experimental base for the development of a new type of the air-conditioning equipment and for the produclion and improvement of MSARU.

    本文简述了分子筛吸附制冷单元的结构、制冷原理,并测定了其制冷量、制冷功率的,变化及制冷周期。分子筛制冷单元有可能发展为工业余热制冷的关键部件。研究发表的结果可作为发展此种全新制冷设备的理论及实验依据。

     
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