再热器
- 名reheater
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三代核电厂EPR项目中的汽水分离再热器选择
Choice of Vertical Moisture Separator Reheater ( MSR ) for the EPR Project in Three-Generation Nuclear Power Plant
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IMP在过热器再热器在线故障诊断系统中的应用&原理与编程
Application of IMP in the system of on-line fault diagnosis for the superheater / reheater
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基于概率鲁棒性的锅炉过热汽温串级PID控制器中间过热器,再热器
Cascade PID controllers for superheated steam boiler temperatures based on probabilistic robustness
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ODBC技术在再热器和过热器在线故障诊断系统中的应用
The Application of ODBC Technique in Development of the Online System Failure Diagnosis for the Superheater and Reheater
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600MW机组锅炉再热器爆漏的分析与对策
Analysis and Solution for Tube Explosion of 600 MW Units Boiler Reheater
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300MW机组锅炉末级再热器壁温特性的研究
Research on Wall Temperature Characteristic of Final Reheater in 300 MW Unit Boiler
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300MW燃煤机组锅炉再热器高温腐蚀分析
Analysis for High Temperature Corrosion of Boiler Reheater on a 300 MW Coal-fired Power Plant
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300MW机组锅炉再热器和水冷壁频繁爆漏原因分析及其对策
Cause analysis of frequent BURST-LEAKAGE occurred on Reheater and water-wall of 300 MW Utility Boiler
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在对420t/h锅炉的规范检查当中发现,再热器集汽箱管座及其附属管道外壁出现由内而外发散的放射状裂纹,并且有不断扩大的趋势。
In 420t / h boiler inspecting , the collecting-steam box of reheater and correlative pipelines are detected to appear diffuse crack , which has expansive trend .
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600MW机组高温再热器管泄漏原因及防范措施
Cause and Measures Taken to Prevent Tube Leakage of High-temperature Reheater for 600 MW Generating Units
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在不同工况下300MW锅炉过热器、再热器的特性试验研究
Experimental Study of the Boiler Superheater and Reheater Characteristics of a 300 MW Unit under Various Operating Conditions
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600MW机组锅炉低温再热器连接管磨损的模拟分析
Simulation and analysis about worn-out on connecting pipe of low-pressure Reheater for a boiler of 600 MW Unit
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华能汕头电厂2×300MW机组锅炉再热器爆管原因分析
Burst Cause Analysis for the Reheater Tube of the 2 × 300MW Unit Boiler in Huaneng Shantou Power Plant
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200MW机组过热器及再热器的蒸汽加氧清洗
The Cleaning of Superheater and Reheater with Steam ejected Oxygen in 200 MW Set
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TP304H钢鳍片管再热器焊接裂纹分析
Welding Crack Analysis for TP 304 H Finned Tube Reheater
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220MW煤粉炉再热器改造及其效果分析
Transformation and Effect Analysis for Reheater of 220 MW Coal-Fired Boiler
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350MW机组三级再热器异质焊接接头分析
Analysis of the Different Material Welding Joint of the Tertiary Reheater for 350 MW Unit
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在同样的二次风配风方式下,SW随锅炉负荷的降低而增加,再热器的最大热偏差系数随SW增加而增加。
Under the same secondary air distribution mode SW will increase with a reduction in boiler load . The maximum thermal deviation factor of the reheater will increase with an increase in SW value .
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核电站用汽水分离再热器结构复杂,无损检测按英国国家标准和法国ALSTOM公司工程标准进行。
The moisture separator reheater which used in nuclear power station was a complex structure , the NDT was according to British standards and French ALSTOM project standards .
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汽水分离再热器(简称MSR)是核电站常规岛的特有设备,属内部结构复杂的薄壁大型复合式卧式容器。
MSR ( Moisture Separator Reheater ) is a kind of large combined horizontal pressure vessel with thin-shell and complicated internals , which belongs to the conventional island of NPP .
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700MW机组再热器保护动作事故分析与解决对策
Analysis and Solution of an Accident Caused by Reheater Protection for 700 MW Unit
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125MW机组锅炉末级再热器管失效原因分析
Analysis for Invalidation Failure of Last Stage Reheater Tubes in Electric Boiler of 125 MW Unit
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汽水分离再热器(MSR)是核电站常规岛中较复杂的设备,它的技术含量高、制造难度大,一般均在国外制造。
Moisture Separator Reheater ( MSR ) is a complicated equipment in conventional island of a nuclear power station , it is made in abroad because it contains high technology and difficult manufacturing .
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在动力工程中,大容量、高参数电站锅炉的过热器、再热器大量采用SA213-T91钢。
In power industry , SA213-T91 steel are widely used in superheater and reheater of utility boiler .
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200MW机组高温再热器和高压锅炉过热器钢管服役状况存在差别,建议放宽对102钢高温再热器管老化判废指标。
There exist some differences between service conditions of high pressure boiler superheater and high temperature reheater of a 200 MW unit .
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350MW机组锅炉墙式再热器密封板焊缝裂纹原因分析及改进方法
Cause and Remedy for Cracks in Weld Seams of Reheater Sealing Plate of Wall Type for 350 MW Power Generating Set Boiler
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某电厂300MW亚临界压力锅炉墙式再热器水压泄漏原因分析套管式高压氨加热器内管泄漏原因分析及技术改进
The analysis of leaking reason in the wall reheater during hydrostatic test on A Power Plant REASONS FOR LEAKAGE OF INTERNAL PIPE OF DOUBLE-PIPE HIGH PRESSURE AMMONIA HEATER AND TECHNICAL IMPROVEMENT
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在300MW、600MW机组锅炉中末级再热器管屏采用梳形密封板直接与T91管子相焊,多次出现管子延时裂缝,给企业造成了很大的损失。
Considerable loss has been caused by delayed crack of tubes which frequently occurred due to directly welding comb sealing plate to T91 tubes in finishing reheater panel of300MW , 600MW boiler .
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核电用汽水分离再热器结构复杂,无损检测采用英国国家标准(BS),检验规程及验收标准与JB473094有诸多不同之处,着重介绍了射线检验。
The construction of moisture separator reheater for the use of nuclear is very complexity . British national standard ( BS ) is adopted for the non-destructive test which is very different from the inspection procedure and acceptance criteria of JB 4730-94 and RT methods are introduced .
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该文针对现有300MW机组锅炉再热器系统、结构、参数,对其压降分布及其影响因素进行了计算分析,并在此基础上提出了降低再热器压降的建议。
Considering the construction and parameters of existing 300 MW sets ' reheater systems , the paper presents the calculated pressure drop distribution as well as the influencing factors . Based on these results a way of reducing the pressure loss reheaters is proposed .