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1)  atmospheric hot-water boiler
常压热水炉
1.
Based on the thermodynamics principle and exergy analysis, some formulas are glven in this paper for calculating the exergy efficiency of atmospheric hot-water boilers with water-water heat-transfer tubes.
本文对水-水换热式常压热水炉进行了■分析,建立了其■效率的计算公式。
2)  normal pressure hot-water boiler
常压热水锅炉
1.
Heat supply design and regulating of normal pressure hot-water boiler;
常压热水锅炉供热设计与调节
2.
Several problems existed in normal pressure hot-water boiler design;
浅析常压热水锅炉设计中的几个问题
3.
By way of technological analyzing for the burst of a normal pressure hot-water boiler,the paper finds out the causes of the accident and emphasizes specially the danger of normal pressure hot-water boiler with improper installment or operation.
通过对一起常压热水锅炉爆炸事故的技术分析,查找出事故原因,并强调了常压热水锅炉安装使用不当的危害性。
3)  atmospheric hot water boiler
常压热水锅炉
1.
Discussions on installation height of expansion tanks for atmospheric hot water boilers
常压热水锅炉供暖系统中锅炉膨胀水箱设置高度的探讨
2.
The characteristics of atmospheric hot water boiler and the existing problems are introduced.
介绍了常压热水锅炉的特点及其存在的问题,根据定压方式将常压热水锅炉供热系统分为单点定压供热系统及双点定压供热系统,对设计、调节常压热水锅炉供热系统应注意的问题进行了探讨。
3.
The safety problems needing attention in design and operation of atmospheric hot water boiler room are discussed, which involve the design of system process, the water hammer and the cavitation in circulating pump.
对常压热水锅炉房设计运行中应注意的安全问题进行了探讨,涉及系统流程设计、水击、循环泵汽蚀。
4)  normal-pressure hot water boiler
常压热水锅炉
1.
This paper introduces a connecting device and means of control on a normal-pressure hot water boiler in an air conditioning system.
给出了空调系统中常压热水锅炉的连接方式和控制方法,分析了冬季工况和夏季工况空调水系统循环水泵扬程的差异,指出了系统的优缺
5)  atmospheric gas hot-water heating boiler room
燃气常压热水锅炉房
6)  atmospheric petrochemical furnace
常压加热炉
1.
In this work,optimal operating conditions for an atmospheric petrochemical furnace and optimal adaptive generalized predictive control algorithm were investigate.
对常压加热炉的最优操作条件和最优自适应广义预测控制进行研究。
补充资料:常压粉煤气化炉
分子式:
CAS号:

性质:又称K-T炉。煤常压流化床气化工业炉之一。气化炉双头,如两个中间焊在一起的球锥体,内衬耐火砖,侧面设有双炉头(两面对称)。属流化床气化炉。将原料煤磨成粉煤,粉煤粒度75%~80%通过200目。用螺旋加料器将煤粉送至混合器,与氧气和蒸汽混合,通过炉头中的烧嘴喷入气化炉。煤和气化剂在炉内起火焰反应,产生高达2000℃的高温区,火焰末端,即炉中部的温度为1500℃左右,灰分大部分以熔渣形式沿气化炉壁下流,进入水急冷槽,由出灰机移走。生成的煤气由炉顶引出,气温约1400~1500℃,经废热锅炉回收热量,产生高压蒸汽,再经一系列冷却除尘设备,将煤气温度降至常温。以褐煤为原料制得的煤气组成大致为:CO2 11.9%,CO 55.7%,H2 29.0%,CH40.1%,N2+Ar2%。

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