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1)  cell type heater
单元式加热炉
2)  heating unit
加热单元
1.
With the use of a linear method a mathematical model is derived of the secondary circuit heating unit for a PWR nuclear power plant along with a quantitative analysis of the effect of additional elements on the water feed in factor.
运用线性方法推导出压水堆核电机组二回路加热单元的数学模型及附加成份对进水系数影响的局部定量分析方法 ,并在此基础之上给出了二回路高压给水单元进水系数的计算通式 ,从而为压水堆核电机组二回路应用“循环函数法”开辟了一条崭新的道
3)  tubular-furnace
管式加热炉
1.
Energy saving technology for tubular-furnace through swirl flow field combustion;
管式加热炉旋流场燃烧节能技术研究
2.
Tubular-furnace Thermal Efficiency Optimization Control
管式加热炉热效率优化控制
3.
The sootblowing optimization for convective heating surface of tubular-furnace is investigated in this paper.
在管式加热炉对流受热面实际传热系数和理想传热系数的基础上,推导出了洁净因子的计算模型,再根据蒸汽吹灰器消耗蒸汽能量损失、积灰能量损失和加热炉系统能量损失之和最小的原则,确定了最优吹灰时间间隔。
4)  drum-type heating furnace
筒式加热炉
1.
The reason for corrosion-deposition and damage of a drum-type heating furnace was studied with XRD,scanning electron microscope with EDX,as well as measurement of mechanical properties.
利用X射线衍射法、电子显微镜及能谱、力学性能测试分析了筒式加热炉火管和烟管腐蚀结垢及损坏原因,结果表明,由于加热炉介质是从地下采集的未经过任何处理的含油污水,其中含有泥沙及一些矿物质,加热过程中在火管壁上沉积大量的垢和泥沙等悬浮物,使管壁的传热效率降低,使加热炉局部产生超温。
5)  tubular heater
管式加热炉
1.
metal temperature at tube wall of tubular heaters, formula intention are evaluated.
从讨论管式加热炉最高管壁金属温度的计算公式开始,分析评述了公式的内涵;总结归纳了最高管壁金属温度的实用计算程序;并根据管式加热炉的具体情况,建议采用三种不同的计算方法。
2.
The design of tubular heater\'s tube was presented in high-pressure long pipeline transportation,the surface temperature was analyzed in different heat flux density.
到目前为止,广泛应用于中低压长输管道的管式加热炉还没有在高压长输管道上应用的经验。
3.
Influencing factors on heat efficiency of tubular heaters are analyzed, which mainly include excess air factor,imperfect combustion and exhaust temperature.
分析了影响管式加热炉热效率的因素,主要包括过剩空气系数、不完全燃烧、排烟温度等。
6)  Tubular furnace
管式加热炉
1.
Tacking burning fuel oil as an example, the impacts of excess air coefficient a on the thermal efficiency and the corrosion of furnace tubes in tubular furnaces were discussed in this paper.
以燃烧燃料油为例,讨论了过剩空气系数α对管式加热炉热效率和炉管腐蚀的影响,并从设计、操作等方面针对这些影响提出了一些建议。
2.
A general knowledge expression“production rule+frame+semantic network+nervous network+object oriented expression”is brought forward to express the running condition of tubular furnace and.
对管式加热炉运行状态诊断专家系统 ( ESDOTF)中所采用的知识表达形式及管式加热炉中知识的获取及管理进行了研究 ,提出了“产生式规则 +框架 +语义网络 +神经网络 +面向对象的知识表达方式”的综合知识表达方式 ,对管式加热炉现场运行情况进行了完整的表述 ,为保证整个管式加热炉系统安全高效运行打下了基
补充资料:(三油酸、单元脂肪酸)三甲基丙烷酯
CAS:85005-23-8

中文名称:(支链与直链)(C14-18饱和、C18不饱和)脂肪酸与三甲基丙烷的酯化物
(三油酸、单元脂肪酸)三甲基丙烷酯

英文名称:Fatty acids, C14-18 and C18-unsatd., branched and linear, esters with trimethylolpropane
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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