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1)  high temperature accumulation heat combustion technology
高温蓄热燃烧技术
2)  High Temperature Air Cobustion technology
蓄热式高温燃烧技术
3)  regenerative high temperature air combustion
蓄热式高温空气燃烧技术
4)  regenerative high temperature combustion technology
蓄热式高温燃烧
1.
The technology principle, technology characteristics and development significance of regenerative high temperature combustion technology and its real application in industrial furnace field were introduced.
对蓄热式高温燃烧技术的技术原理、技术特点、发展意义及其在工业炉领域的实际应用作了介绍 ,工业炉领域应大力实施和推广这一项节能技术措施 ,以提高工业炉能源利用率 ,减少环境污
5)  regenerative combustion technology
蓄热燃烧技术
1.
Combined with the actual production,it is proved that the application of blast furnace gas and air double regenerative combustion technology on slab heating furnace is feasible.
结合张家港宏昌钢板厂3#蓄热式板坯加热炉的生产应用,对板坯加热炉的加热温度以及炉温均匀性等基本要素进行了研究,经对生产实际情况的综合分析,验证了高炉煤气、空气双蓄热燃烧技术在板坯加热炉上应用的可行性。
2.
Gas consumption would be decreased if the combustion system of soaking pit is rebuilt applying regenerative combustion technology.
应用蓄热燃烧技术改造传统均热炉燃烧系统,可以节约燃气的消耗率,提高炉内温度场的均匀性。
3.
The basic principle on regenerative combustion technology was introduced,fuel oil consumption and thermal efficiency of both the traditional and the regenerative furnace were calculated,and the calculated results on energy-saving benefit were analyzed.
介绍了蓄热燃烧技术的基本原理,对传统的加热炉和蓄热式加热炉分别进行了燃料油用量和热效率等的计算,并对计算结果进行了节能效益分析。
6)  regenerative combustion technology
蓄热式燃烧技术
1.
Industrial application of regenerative combustion technology;
蓄热式燃烧技术的工业应用
2.
The application of regenerative combustion technology on the steel container heating, using effect, technologyical characteristic and the case of energy_saving are introduced.
介绍蓄热式燃烧技术在炼钢厂钢包烘烤器上的应用、使用效果、技术特点和节能效益情况。
3.
Introduces the applications of regenerative combustion technology in designing the walking-beam reheating furnace for Yuzun high wire in Qinggang.
介绍了蓄热式燃烧技术在青钢钰尊高线步进梁式加热炉设计中的应用情况。
补充资料:蓄热式换热
分子式:
CAS号:

性质:工业中的换热方式之一。利用固体填充物贮蓄热量以达到换热目的。当气体通过时,根据气体的温度高于或低于填充物的温度,可将热量传给填充物或从填充物吸取热量。常用于冶金工业,也用于化学工业等。例如炼钢平炉和煤气炉常用来预热空气等。

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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