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1.
* Space heating with geothermal energy and water source heat pumps
热采暖及水源热泵。
2.
Advances in Heavy Oil Cold Flow Production and Geotherm Oil Recovery Technology Feasibility Research
稠油冷采进展与地热采油可行性研究
3.
Development of valve device for injection-production integrated technology of heavy oil thermal recovery slim holes
稠油热采井注采一体化配套开关装置
4.
Utilization of After heat in CO_2 Water Cooler;
浅谈CO_2水冷器余热采暖热源的利用
5.
Thermodynamic Analysis on Surface Water Source Freezing Latent Heat Collection System
地表水源凝固热采集系统热力学研究
6.
Energy-conservation of the Residual Heat of the Flue Gas in a heavy-oil heating recovery steam injection boiler
稠油热采注汽锅炉烟气余热回收利用
7.
Central heating and household measurement is the necessary tendency of heating supply.
集中供热,分户计量的供热采暖方式将是供热采暖的必然趋势。
8.
Application of screw pump technique in the late period of heavy oil thermal recovery
螺杆泵采油技术在稠油热采开发后期的应用
9.
thermal stability of heating system
采暖系统的热稳定性
10.
Heat supply: the manner of the centralized heat supply is adopted in the Park.
供热:区内均采取集中供热取暖方式。
11.
Thermal exchanger has applied Afla Valve Plate Type Thermal Exchanger from Sweden.
换热器采用瑞典阿法拉阀板式换热器。
12.
Test method of thermal output of heat emitter
GB/T13754-1992采暖散热器散热量测定方法
13.
Their preform moulds could be 2-cavity based and use a hot plate or hot runner design.
模具有用两腔的,采用热板/热流道设计。
14.
On Selection Technology of Heating Radiator and Energy Saving of Heating;
采暖散热器应用选择技术与供热节能
15.
The heat source may be steam, heat conduction oil, electricity or coal (oil) hot air furnace.
热源可采用蒸汽、导热油、电或燃煤(油)热风炉配套。
16.
Study on the Characteristics of the Freezing Latent Heat Exchanger and the Performance of the Heat Pump
采集凝固潜热换热装置特性及热泵性能分析
17.
Adopted far infrared metal heating tube, fast heating and energy saving.
采用远红外线金属电热管加热、热风循环,加热速度快、温度均匀、省电。
18.
Study on Heat Production Enhanced Oil Recovery Technology in Fuyu Oilfield
扶余油田热力采油提高采收率技术研究