超临界机组,supercritical unit
1)supercritical unit超临界机组
1.Discussion of the 600MW supercritical unit design optimization;600MW超临界机组设计优化探讨
2.Economic operation of circulating pumps of 600 MW supercritical units;600MW超临界机组循泵经济运行分析
3.Superheated steam temperature control systems for 600 MW supercritical units;600MW超临界机组过热汽温控制系统分析
英文短句/例句

1.The Research of Operating Characteristic for 1000MW Ultra-supercritical Units1000MW超超临界机组运行特性研究
2.Study on the Characteristics of Start-up of the 600MW Ultra-supercritical Generating Unit600MW超超临界机组启动特性研究
3.Hoisting and Installation of Top Girder in 1000 MW Super-critical Unit Boiler1000MW超超临界机组锅炉顶板梁吊装
4.Emergency Protection System of USC Steam Turbines1000MW超超临界机组保护系统简介
5.Design of Superheated Steam Temperature Control in 1000MW Super-supercritical Unit1000MW超超临界机组过热汽温控制设计
6.1000 MW USC Unit Bearing Bush Vibration Analysis and Remedy1000MW超超临界机组瓦振动分析及处理
7.Analysis on Configuration Mode without Motor-Driven Feed Pump for 1000MW Ultra-Supercritical Unit1000MW超超临界机组无电泵配置方式分析
8.Discussion on Main Building Layout of 1000MW Ultra Super Critical Unit1000MW超超临界机组主厂房布置格局探讨
9.Investigation on Selection of 1000 MW ESC Unit Ash Handling System1000MW超超临界机组除渣系统的选择
10.Design analysis of the Selection of the Four main pipelines of the 1000MW Ultra Supercritical Unit1000MW超超临界机组四大管道的选材
11.Design Optimization for 1000MW Ultra-supercritical Unit Control System1000MW超超临界机组控制系统设计优化
12.Designing of Coordinated Control System for 600 MW Supercritical Units600MW超超临界机组协调控制系统设计
13.Design and Development of Simulator on 600MW Super-critical Unit;600MW超临界机组仿真机设计与开发
14.1000 MW USC Turbine Erection in Taizhou Power Plant泰州电厂1000MW超超临界机组汽轮机安装探讨
15.Analysis on Bypass Systemic Type of Ultra-supercritical Pressure Unit超超临界机组汽轮机旁路系统选型实例分析
16.COMPARISION OF RUN BACK STRATEGY BETWEEN SUPERCRITICAL AND SUBCRITICAL UNITS超临界与亚临界机组RB控制策略比较
17.Research about the Thermodynamic Parameter Matching between the Boiler and Turbine of the SC or USC Power Units超(超)临界机组机炉参数匹配问题研究
18.Application of T23 steel to 1 000 MW ultra-supercritical unitsT23钢在超超临界1000MW机组的应用及现状
相关短句/例句

supercritical units超临界机组
1.Error analysis of thermodynamic calculations for supercritical units by IAPWS-IF97 and IFC-67 formulas;IAPWS-IF97与IFC-67公式在超临界机组热力计算中的偏差分析
2.Control characteristics and its strategy analysis of supercritical units;超临界机组控制特性和控制策略分析
3.The study of feed water control of supercritical units超临界机组给水控制研究
3)supercritical power unit超临界机组
1.Mechanism analysis and treatment for HP heater trip under the coordinated control condition of 600 MW supercritical power units;600MW超临界机组CCS工况下高压加热器跳闸机理分析与处理办法
2.Prevention measures for too high main steam temperature during the running up of 600 MW supercritical power unit;600MW超临界机组冲转时主蒸汽温度偏高的防治措施
3.An introduction is being presented to the initiation conditions and main actions of feed pump RUNBACK(RB) operation that may be encountered by domestic 600 MW supercritical power units,together with a detail description to 3 RB tests and corresponding abnormal conditions arisen during testing.介绍了国产600 MW超临界机组给水泵故障减负荷(RUNBACK)的种类、主要动作,详细描述了3次给水泵RUNBACK试验过程及发生的异常情况,分析了引发RUNBACK的原因,并提出了控制系统在逻辑上的完善化措施。
4)super-critical unit超临界机组
1.Analysis of start-up through IP cylinder and its fault treatment for 600 MW super-critical unit600MW超临界机组汽轮机中压缸启动及故障分析处理
2.Based on the characteristics of super-critical unit boiler,compared the features of steady pressure pipe blowing scheme and energy storage reduced pressure pipe blowing scheme are compared.根据超临界机组锅炉的特点,比较了稳压吹管方式和蓄能降压吹管方式的特点,吹管方式的选择应综合考虑锅炉承压部件的安全、蓄热性能、设备的现场安装进度和附属设备的配置情况,并提出了超临界机组采用稳压吹管应注意的事项。
5)super-critical and ultra super-critical power unit超临界、超超临界机组
6)ultra-supercritical unit超超临界机组
1.Chemical cleaning of ultra-supercritical unit with ammoniated EDTA;超超临界机组的EDTA化学清洗
2.Discussion and research on design goals of 1000 MW ultra-supercritical unit;1000MW超超临界机组设计目标探讨及研究
3.Comprehensive prevention of steam oxidation and solid particle erosion for the ultra-supercritical unit;超超临界机组蒸汽氧化及固体颗粒侵蚀的综合防治
延伸阅读

超临界燃煤发电机组超临界燃煤发电机组:指容量为60万千瓦以上,主蒸汽压力达到25兆帕以上,温度达到593-650℃或者更高的参数,并具有一次再热或二次再热循环的燃煤发电装置,具有煤耗低、环保性能好、技术含量高的特点,机组热效率能够达到45%左右。