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影响制冷机性能的主要因素分析
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作者 陈福祥 《现代制造工程》 CSCD 北大核心 2003年第z1期54-56,共3页
蒸气压缩式制冷机,是各类型空调制冷设备的机械核心部分。虽然制冷机的结构型式、运行工况不尽相同,但影响其性能的主要因素为:制冷剂;润滑油;压缩机效率;蒸发器、冷凝器的换热条件。结合生产实践,对制冷机性能下降的现象、原因作出了... 蒸气压缩式制冷机,是各类型空调制冷设备的机械核心部分。虽然制冷机的结构型式、运行工况不尽相同,但影响其性能的主要因素为:制冷剂;润滑油;压缩机效率;蒸发器、冷凝器的换热条件。结合生产实践,对制冷机性能下降的现象、原因作出了透彻的热力学分析,并提出了相应的防范措施。 展开更多
关键词 制冷机 制冷剂 冷冻油 输气系数 换热条件
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某型二冲程航空活塞发动机缸头热负荷研究 被引量:5
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作者 陈丙伟 陈伟 张晨 《重庆理工大学学报(自然科学)》 CAS 北大核心 2018年第11期58-63,92,共7页
某型二冲程航空活塞发动机缸头的冷却形式为风冷,影响缸头热负荷的主要因素包括缸头外部冷却空气流速、缸头燃烧室内燃气温度。以某型二冲程航空活塞发动机缸头为对象,研究缸头在极限工况下的热负荷,分析缸头温度场分布特点,为缸头的散... 某型二冲程航空活塞发动机缸头的冷却形式为风冷,影响缸头热负荷的主要因素包括缸头外部冷却空气流速、缸头燃烧室内燃气温度。以某型二冲程航空活塞发动机缸头为对象,研究缸头在极限工况下的热负荷,分析缸头温度场分布特点,为缸头的散热片结构优化设计提供参考依据。以缸内燃气瞬时温度和缸内燃气瞬时传热系数为基础,利用经验公式计算了缸内燃气与缸头内壁的换热边界条件以及缸头外部与冷却空气的换热边界条件。利用有限元数值仿真分析软件对某型二冲程航空活塞发动机缸头热负荷进行了仿真计算,获得缸头的温度场分布。通过对发动机进行地面台架试验测取了缸头在该工况下的特征点温度,试验测量值与仿真值对比,可见仿真结果与试验的误差小于5%,满足工程需要。 展开更多
关键词 二冲程航空活塞发动机 缸头 换热边界条件 热负荷
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Heat transfer analysis and experimental verification of cast heat exchanger 被引量:1
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作者 俞洁 董蕾 +1 位作者 张欢 由世俊 《Journal of Central South University》 SCIE EI CAS 2012年第6期1610-1614,共5页
From the viewpoints of environmental conservation and energy efficiency,seawater-source heat pump system(SWHP) to provide district cooling and heating is applied in coastal areas.Based on the system,a heat transfer mo... From the viewpoints of environmental conservation and energy efficiency,seawater-source heat pump system(SWHP) to provide district cooling and heating is applied in coastal areas.Based on the system,a heat transfer model was established for cast heat exchanger(CHE) adopted by SWHP systems.The CHE consists of pipes immersed in the seawater and used for transferring heat between the seawater and the heat exchanger pipes of SWHP system.An experimental study was carried out to test the validity of the model.A program was developed in VB language and the effects of inlet temperature,flow rate of the secondary refrigerant and length of CHE on the results were investigated.The results of the numerical simulation are in consistence with the experiments in both winter and summer conditions.As a result,application of SWHP systems with CHE in coastal areas in China is feasible due to the favorable geographical conditions and environment. 展开更多
关键词 seawater-source heat pump cast heat exchanger mathematical model experimental verification numerical simulation
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Experimental study on convection heat transfer and air drag in sinter layer 被引量:2
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作者 潘利生 魏小林 +2 位作者 彭岩 时小宝 刘怀亮 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第7期2841-2848,共8页
Convection heat transfer coefficient and air pressure drop in sinter layer are important factors for the design of sinter cooling craft. Due to the lack of necessary data, the two parameters are studied by experimenta... Convection heat transfer coefficient and air pressure drop in sinter layer are important factors for the design of sinter cooling craft. Due to the lack of necessary data, the two parameters are studied by experimental method. The experimental results show that heat conduction of sinter impacts the measurement of convection heat transfer coefficient. Convection heat transfer increases with the increase of air volumetric flow rate. Sinter layer without small particles(sample I) gives higher convection heat transfer coefficient than that with small particles(sample II). Under the considered conditions, volumetric convection heat transfer coefficient is in the range of 400-1800 W/(m3·°C). Air pressure drop in sinter layer increases with the increase of normal superficial velocity, as well as with the rise of air temperature. Additionally, air pressure drop also depends on sinter particle size distribution. In considered experimental conditions, pressure drop in sinter sample II is 2-3 times that in sinter sample I, which resulted from 17% small scale particles in sinter sample II. 展开更多
关键词 sinter layer convection heat transfer pressure drop
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Characteristic analysis of bleeding effect on standing column well (SCW) type geothermal heat exchanger
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作者 CHOI Hoon-ki YOO Geun-jong +2 位作者 LIM Kyung-bin LEE Sang-hoon LEE Chang-hee 《Journal of Central South University》 SCIE EI CAS 2012年第11期3202-3207,共6页
Thermal performance is the most important factor in the development of a borehole heat exchanger utilizing geothermal energy.The thermal performance is affected by many different design parameters and different operat... Thermal performance is the most important factor in the development of a borehole heat exchanger utilizing geothermal energy.The thermal performance is affected by many different design parameters and different operating conditions such as bleeding.This eventually determines the operation and cost efficiency of the borehole heat exchanger system.The thermal performance of an open standing column well (SCW) type geothermal heat exchanger was assessed under the influence of bleeding.For this,a thermal response test rig was established with line-source theory.The test rig also had a bleeding function by releasing fluid while taking additional underground water through the heat exchanger.The thermal response test was performed with an additional constant input heat source.Effective thermal conductivity and thermal resistance were obtained from the measured data.From the measurement,the effective thermal conductivity is found to have 1.47 times higher value when bleeding is applied.The thermal resistance also increases by 1.58 times compared to a non-bleeding case.This trend indicates enhanced heat transfer in the SCW type heat exchanger with a bleeding function.Bleeding,therefore,could be an effective method of achieving a high heat transfer rate in the SCW type heat exchanger with sufficient underground water supply. 展开更多
关键词 standing column well type thermal response test effective thermal conductivity thermal resistance bleeding effect
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