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1)  steam preheat
料温
1.
The structure, characteristic and working principle of a surge bin with steam preheat function were presented.
其蒸汽利用率可达95%以上,可使混合料温度提高到70℃以上,该厂使用这种加热技术后,获得了良好的生产效果。
2)  thermal insulation material
保温材料
1.
Present situations and development trend of techniques of thermal insulation materials;
保温材料的技术现状和发展趋势
2.
Diagnosis of problem in heating system of a certain factory and optimization of thermal insulation material;
某厂供热系统问题诊断及保温材料优化
3.
The analysis of the selection of the thermal insulation materials for the housing projects of architectural energy-saving and environmental preservation
浅析建筑节能环保型房屋工程的保温材料选择
3)  intermediate temperature solder
中温钎料
1.
Research progress of intermediate temperature solder for electronic device;
电子器件用中温钎料的研究进展
4)  thermobaric fuel
温压燃料
1.
On energy releasing efficiency of thermobaric fuel containing aluminum in dispersing with explosion;
含铝温压燃料爆炸抛撒过程中能量释放效率研究
5)  heat preservation material
保温材料
1.
Cooling effectiveness analysis of the vent-pipe, cast-detritus and heat preservation material on protecting embankment in permafrost regions;
通风管、抛碎石和保温材料保护冻土路堤的工程效果分析
2.
For the performance of Heat preservation material, we carry out field test for bleaching bead and its mixture and without the heat preservation material that isn’t within bleaching bead , carry out result to analyze and compare, reach theory, verify the correctness of test result.
对保温材料的性能、选择等进行讨论 ,对漂珠、漂珠混合物及不含漂珠的保温材料进行了现场试验 ,并对其结果进行了分析和比较 ,最后给出理论推导以验证试验结果的正确性。
6)  feed temperature
进料温度
1.
The effects of the feed composition and the feed temperature on the energy-saving efficiency of the backward-feed two-effect distillation are researched in ethanol-water system by process simulation.
以乙醇-水为物系,通过模拟计算,研究进料组成和进料温度对三种逆流双效精馏节能效果的影响。
2.
As the forward-feed,backward-feed,dual-feed two-effect distillation are not better used at the conditions of the feed temperature being higher than the bubble point temperature,we chose new type distillation flow-two-effects system with vapor feed to reboiler.
由于常见的双效精馏、顺流双效精馏、逆流双效精馏、平流双效精馏在泡点以上温度进料时,节能效果不是很理想,针对泡点以上温度进料,我们研究了新型节能流程——气体进料作再沸器热源双效精馏流程,以乙醇-水为实验物系,通过模拟计算,考察进料组成和进料温度对其节能率的影响。
补充资料:料料窕窕
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