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1.
Simulation Research on Fuzzy PID Control of Thermal Deaerator based on Matlab
基于MATLAB的热力除氧器模糊PID控制仿真研究
2.
With the continuous improvement of the operating parameters for thermal power generating units, the technical requirements for thermal deaerators has been becoming stricter and stricter.
随着火力发电机组参数的不断提高,对热力除氧器的要求越来越高。
3.
deaerating heater
除气加热器除氧加热器
4.
Analysis and Calculation on the Thermal Power System Without Deaerator of a Coal-fired Power Generating Unit;
火电机组无除氧器热力系统的分析计算
5.
Thermal Economic Analysis on Inner Leakage of Deaerator of 300 MW Units
300MW机组除氧器内漏的热经济性分析
6.
Application of the Technology for Exhausted Steam Recovery of Deaerator in the Thermal Power Plant of Baotou Steel
除氧器乏汽回收技术在热电厂的应用
7.
Analysis and Investigation of Thermal Power Plant Deaerator Lifting Project
火力发电厂除氧器设备吊装项目分析研究
8.
Application of Frame Electric Heater for Elimination Residual Stress
框架式电加热器在消除焊接残余应力中的应用
9.
Brief of pressure safety design for trans-critical system of household carbon dioxide heat pump water heater
家用二氧化碳热泵热水器跨临界系统压力安全设计概要
10.
HEATED REAR WINDOW DEFOGGER GRID
电热后车窗除雾器网线
11.
Improvement on Water Level Control System for Deoxidization Device of Ship Steam Power Plant
船舶蒸汽动力装置除氧器水位调节系统改进分析
12.
A study on the physiology of heat tolerance in Chinese cabbage Ⅲ.Ability to scavenge active oxygen of emzyme and non?emzyme system and heat tolerance
大白菜耐热性的生理研究 Ⅲ.酶性和非酶性活性氧清除能力与耐热性
13.
Abstract: A pressure sensor which can cancel thermal zero shift is described.
文摘:提出一种可消除热零点漂移的压阻式压力传感器。
14.
A pressure sensor which can cancel thermal zero shift is described.
提出一种可消除热零点漂移的压阻式压力传感器。
15.
Describes a sleeve type compensator-the self balancing compensator, which can be used in heating networks to eliminate the blind flange force on primary fixing trestles.
介绍了一种套筒型补偿器———自平衡补偿器,它可用在热力管网中消除主固定支架的盲板力。
16.
Mechanism and thermodynamics of carbothermal reduction of alumina
氧化铝碳热还原反应机制及其热力学
17.
Theoretical Analysis about Interface Oxidation of Thermal Barrier Coatings with Thermodynamics;
热障涂层界面氧化的热力学理论分析
18.
From thermodynamics and kinetics it is explored why in a reactor in which gas phase is pressured by oxygen the rapid decarburization and temperature ascension of the bath could be realized.
从热力学和动力学方面探索了氧气加压反应器中炼钢能加速脱碳和升温的原因