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矿用喷淋式空冷器的结构与性能研究 被引量:2
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作者 孙瑞玉 《中州煤炭》 2015年第9期85-88,共4页
喷淋式空冷器在国内外未得到广泛应用,随着科技的发展,其缺点已经得到克服,且国外已经开始将其用于矿井降温。阐述了喷淋式空冷器的必要性、结构及传冷性能,并对喷淋式空冷器热交换效果的主要因素:水量和水温、风量与进风温度对空冷器... 喷淋式空冷器在国内外未得到广泛应用,随着科技的发展,其缺点已经得到克服,且国外已经开始将其用于矿井降温。阐述了喷淋式空冷器的必要性、结构及传冷性能,并对喷淋式空冷器热交换效果的主要因素:水量和水温、风量与进风温度对空冷器产冷量的影响进行了简要分析,以期使该空冷器在国内矿井得到推广与应用。 展开更多
关键词 矿井降温 喷淋式空 表面式空 传冷性能
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Effect of Adsorbent Diameter on the Performance of Adsorption Refrigeration 被引量:1
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作者 黄宏宇 何兆红 +4 位作者 袁浩然 小林敬幸 赵丹丹 窪田光宏 郭华芳 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2014年第5期602-606,共5页
Adsorbents are important components in adsorption refrigeration. The diameter of an adsorbent can affect the heat and mass transfer of an adsorber. The effect of particle diameter on effective thermal conductivity was... Adsorbents are important components in adsorption refrigeration. The diameter of an adsorbent can affect the heat and mass transfer of an adsorber. The effect of particle diameter on effective thermal conductivity was investigated. The heat transfer coefficient of the refrigerant and the void rate of the adsorbent layer can also affect the effective thermal conductivity of adsorbents. The performance of mass transfer in the adsorber is better when pressure drop decreases. Pressure drop decreases with increasing permeability. The permeability of the adsorbent layer can be improved with increasing adsorbent diameter. The effect of adsorbent diameter on refrigeration output power was experimentally studied. Output power initially increases and then decreases with increasing diameter under different cycle time conditions. Output power increases with decreasing cycle time under similar diameters. 展开更多
关键词 adsorption refrigeration heat and mass transfer adsorbent diameter thermal conduction PERMEABILITY
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Comparison on Thermal Conductivity and Permeability of Granular and Consolidated Activated Carbon for Refrigeration 被引量:2
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作者 JIN Zhequan TIAN Bo WANG Liwei WANG Ruzhu 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2013年第6期676-682,共7页
This paper focuses on the development of three types of activated carbon (AC) adsorbents, i.e. granular AC, consolidated AC with chemical binder, and consolidated AC with expanded natural graphite (ENG). Their the... This paper focuses on the development of three types of activated carbon (AC) adsorbents, i.e. granular AC, consolidated AC with chemical binder, and consolidated AC with expanded natural graphite (ENG). Their thermal conductivity was investigated with the steady-state heat source method and the permeability was tested with nitrogen as the gas source. Results show that the thermal conductivity of granular AC with different sizes al-most maintains a constant at 0.36 W-(m.K)-', while the value modestly increases to 0.40 W.(m.K)-' for the con- solidated AC with chemical binder. The consolidated AC with ENG at the density of 600 kg. m-3 shows the best heat transfer performance and their thermal conductivity vary from 2.08 W-(m.K)- to 2.61 W. (m.K)-1 according toits fraction of AC. However, the granular AC and consolidated AC with chemical binder show the better permeabil- ity performance than consolidated AC with ENG binder whose permeability changes from 6.98x10-13 m2 to 5.16x10TM m2 and the maximum occurs when the content of AC reaches 71.4% (by mass). According to the differ- ent thermal properties, the refrigeration application of three types of adsorbents is analyzed. 展开更多
关键词 ADSORBENT activated carbon expanded natural graphite thermal conducUvity PERMEABILITY
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Study on the Influence of Structural Parameters of Multi-channel Cylinder Dryer on Heat Transfer Performance
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作者 Yan Yan Dong Jixian 《Journal of Energy and Power Engineering》 2017年第7期454-464,共11页
An approach to design multi-channel cylinder dryer was proposed. The heat transfer performance and flow characteristic under various structural parameters were analyzed. First, an experiment was designed and set up to... An approach to design multi-channel cylinder dryer was proposed. The heat transfer performance and flow characteristic under various structural parameters were analyzed. First, an experiment was designed and set up to measure the condensing heat transfer coefficient and the pressure drop in order to ,~erify the applicability of the Cavallini's correlation. Then, the relationship among the count of channels, aspect ratio, spacing ratio, width, height and hydraulic diameter of a channel was given. Finally, the correlation of condensing heat transfer and the homogeneous model was introduced in order to observe the heat transfer performance and flow characteristic of the multi-channel cylinder dryer affected by different structures. The study reveals that the structural parameters including count of channels, aspect ratio, spacing ratio of a channel dramatically influence the condensation heat transfer coefficient and frictional resistance of the steam. Based on the selected paper machine, it is suggested that the overall performance of the multi-channel cylinder dryer is best if the count of channels is 150-200, the aspect ratio is 1 : 3 and the spacing ratio is 1 : 1-1 : 3. 展开更多
关键词 Multi-channel cylinder dryer condensation heat transfer distributed parameter model numerical simulation.
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Effects of Clearance around Square Pillar in Rectangular Enclosure on Cooling Performance of Pulsating Airflow
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作者 Takashi Fukue Koichi Hirose +2 位作者 Hidemi Shirakawa Jun Suzuki Yosuke Saga 《Journal of Mechanics Engineering and Automation》 2016年第8期385-391,共7页
This study focuses on a development of heat transfer enhancement techniques using pulsating flow for thermal equipment such as electronic equipment and heat exchangers. In this report, the heat transfer performance of... This study focuses on a development of heat transfer enhancement techniques using pulsating flow for thermal equipment such as electronic equipment and heat exchangers. In this report, the heat transfer performance of the pulsating airflow around the heating pillar mounted in the rectangular enclosure was investigated experimentally while changing the size of the clearance between the enclosure wall and the pillar. The pillar simulates the components mounted in thermal equipment such as fins and electrical components. The rectangular enclosure simulates an enclosure of electronic equipment and heat exchangers. The shape of the cross section of the pillar was square having sides 30 mm. The dimension of the width of the enclosure was changed from 50 mm to 80 mm. It was found that the heat transfer performance of the pulsating airflow became higher than that of the steady flow regardless of the dimension of the clearance. The heat transfer enhancement around heating components by the pulsating flow can be available regardless of the clearance around the components. 展开更多
关键词 Forced convection heat transfer enhancement pulsating flow thermal management.
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Study on the performance of TEG with heat transfer enhancement using graphene-water nanofluid for a TEG cooling system 被引量:5
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作者 LI YiHuai WU ZiHua +4 位作者 XIE HuaQing XING JiaoJiao MAO JianHui WANG Yuan Yuan LI Zhen 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第8期1168-1174,共7页
Improvement of the heat transfer effect of cold side of a thermoelectric generator(TEG) is one of the approaches to enhance the performance of the TEG systems.As a new type of heat transfer media,nanofluids can enhanc... Improvement of the heat transfer effect of cold side of a thermoelectric generator(TEG) is one of the approaches to enhance the performance of the TEG systems.As a new type of heat transfer media,nanofluids can enhance the heat transfer performance of working liquid significantly.In this study,the performance of a commercial TEG with graphene-water(GW) nanofluid as coolants in a minichannel heat exchanger is investigated experimentally at low temperatures.The results show that the output power of TEG increases with the flow rate under 950 mL/min.However,the fluid flow rate has no influence on the output power of TEG with higher flow rate(larger than 950 mL/min) when the heat transfer dynamic balance state of the system is reached.The optimal concentration and flow rate of nanofluid are 0.1 wt%and 950 mL/min,respectively.At the optimal conditions,the improved voltage,output power and conversion efficiency with GW nanofluid applied in the cooling system are increased by11.29%,21.55%and 3.5%in comparison with those with only water applied,respectively. 展开更多
关键词 thermoelectric generation graphene-water nanofluid power generation
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An Experimental Study on the Performance of a Stainless Steel-Water Loop Heat Pipe under Natural Cooling Condition 被引量:2
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作者 WANG Yiwei CEN Jiwen +1 位作者 JIANG Fangming ZHU Xiong 《Journal of Thermal Science》 SCIE EI CAS CSCD 2014年第1期91-95,共5页
Aiming to improve the thermal characteristics of modern electronics, we experimentally study the performance of a stainless steel/water loop heat pipe(LHP) under natural cooling condition. The LHP heat transfer perfor... Aiming to improve the thermal characteristics of modern electronics, we experimentally study the performance of a stainless steel/water loop heat pipe(LHP) under natural cooling condition. The LHP heat transfer performance, including start-up performance, temperature oscillation and total thermal resistance at different heat loads and with different incline angles have been investigated systematically. Experimental results show that at an optimal heat load(i.e. 60 W) and with the LHP being inclined 60 to the horizontal plane, the total thermal resistance is lowered to be ~0.24 K/W, and the temperature of evaporator could be controlled steadily at around 90 C. 展开更多
关键词 Loop heat pipe cooling of electronics heat dissipation thermal resistance
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Experimental Study on Heat Transfer Performance of Pulsating Heat Pipe with Refrigerants 被引量:5
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作者 WANG Xingyu 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第5期449-453,共5页
The effects of different refrigerants on heat transfer performance of pulsating heat pipe(PHP) are investigated experimentally.The working temperature of pulsating heat pipe is kept in the range of 20℃-50℃.The start... The effects of different refrigerants on heat transfer performance of pulsating heat pipe(PHP) are investigated experimentally.The working temperature of pulsating heat pipe is kept in the range of 20℃-50℃.The startup time of the pulsating heat pipe with refrigerants can be shorter than 4 min,when heating power is in the range of 10W-100W.The startup time decreases with heating power.Thermal resistances of PHP with filling ratio 20.55% were obviously larger than those with other filling ratios.Thermal resistance of the PHP with R134a is much smaller than that with R404A and R600a.It indicates that the heat transfer ability of R134a is better.In addition,a correlation to predict thermal resistance of PHP with refrigerants was suggested. 展开更多
关键词 R134A pulsating heat pipe heat transfer performance non-dimensional correlation
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Mathematical Simulation of Lithium Bromide Solution Laminar Falling Film Evaporation in Vertical Tube 被引量:3
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作者 Chengming Shi YangWang Huili Hu YingYang 《Journal of Thermal Science》 SCIE EI CAS CSCD 2010年第3期239-244,共6页
For utilization of the residual heat of flue gas to drive the absorption chillers,a lithium-bromide falling film in vertical tube type generator is presented.A mathematical model was developed to simulate the heat and... For utilization of the residual heat of flue gas to drive the absorption chillers,a lithium-bromide falling film in vertical tube type generator is presented.A mathematical model was developed to simulate the heat and mass coupled problem of laminar falling film evaporation in vertical tube.In the model,the factor of mass transfer was taken into account in heat transfer performance calculation.The temperature and concentration fields were calculated.Some tests were conducted for the factors such as Re number,heating flux,the inlet concentration and operating pressure which can affect the heat and mass transfer performance in laminar falling film evaporation.The heat transfer performance is enhanced with the increasing of heat flux.An increasing inlet concentration can weaken the heat transfer performance.The operating pressure hardly affects on heat and mass transfer.The bigger inlet Re number means weaker heat transfer effects and stronger mass transfer.The mass transfer obviously restrains the heat transfer in the falling film solution.The relation between dimensionless heat transfer coefficient and the inlet Re number is obtained. 展开更多
关键词 lithium bromide solution REFRIGERATION falling film EVAPORATION heat and mass transfer
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Heat Transfer and Performance Characteristics of Axial Cooling Fans with Downstream Guide Vanes 被引量:2
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作者 Alexandros Terzis Ioannis Stylianou +1 位作者 Anestis I. Kalfas Peter Ott 《Journal of Thermal Science》 SCIE EI CAS CSCD 2012年第2期162-171,共10页
This study examines experimentally the effect of stators on the performance and heat transfer characteristics of small axial cooling fans. A single fan impeller, followed by nine stator blades in the case of a complet... This study examines experimentally the effect of stators on the performance and heat transfer characteristics of small axial cooling fans. A single fan impeller, followed by nine stator blades in the case of a complete stage, was used for all the experimental configurations. Performance measurements were carried out in a constant speed stage performance test rig while the transient liquid crystal technique was used for the heat transfer measurements. Full surface heat transfer coefficient distributions were obtained by recording the temperature history of liquid crystals on a target plate. The experimental data indicated that the results are highly affected by the flow conditions at the fan outlet. Stators can be beneficial in terms of pressure drop and efficiency, and thus more economical operation, as well as, in the local heat transfer distribution at the wake of the stator blades if the fan is installed very close to the cooling object. However, as the separation distance increases, enhanced heat transfer rate in the order of 25% is observed in the case of the fan impeller. 展开更多
关键词 axial fans STATORS PERFORMANCE thermochromic liquid crystals transient heat transfer
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