反电晕,back corona
1)back corona反电晕
1.The energy saving potential and control method of electrostatic precipitator(ESP) are discussed and the main cause of over energy expenditure what is back corona and re-entrainment is pointed out.就电除尘器的节能潜力、控制方法进行了讨论,指出了二次扬尘和反电晕是造成电除尘器能耗过大的主要原因。
2.The phenomena of back corona and corona obstruction often take place in electric precipitators of coal-fired power plants and lead to low dust removal efficiency.燃煤电厂所使用的电除尘器常常会出现反电晕和电晕封闭现象,导致除尘效率不高。
3.It is necessary to study the regularity of the back corona which is one of the chief hitches in operation of electrostatic precipitator.反电晕是影响电除尘器正常运行的主要障碍之一,本文在实验室内的电除尘器模拟台上,利用高比电阻的有机玻璃板间的窄缝空气隙,在冷态条件下产生反电晕
英文短句/例句

1.Mechanism of Back Corona and Anticoagulation in Electrostatic Precipitator;静电除尘器反电晕机理与反凝聚研究
2.EXPERIMENT AND STUDY ON BACK CORONA IN LABORATORY实验室条件下反电晕现象的分析研究
3.Study on Electrode Matching Model of Saving Energy and Restraining Discorona of ESP电除尘器节能和抑制反电晕极配形式的试验研究
4.The Study of Chemical Reaction Kinetics of NO Removal by Negative Pulse Corona Discharge;负脉冲电晕放电NO脱除反应动力学过程研究
5.STUDY ON PULSE CORONA NON-THERMAL PLASMA REACTOR FOR SO_2 REMOVAL IN FLUE GAS;脉冲电晕非热等离子体烟气脱硫反应器的研究
6.Experimental Study on the Chlorination of Methane by Corona Plama脉冲电晕等离子体甲烷氯化反应实验研究
7.Influence of pulse corona reactor structure on removal efficiency of ethanethiol脉冲电晕反应器结构对乙硫醇消除效果的影响
8.Study on Removal of VOCs by Pulse Corona Discharge--Structure of Discharge Reactor脉冲电晕放电治理有机废气的研究——放电反应器结构
9.Study on plasma chemical reaction of water interface corona discharge desulfurization and denitrogenation水界面电晕放电脱硫脱氮的等离子化学反应研究
10.The Investigation on the Negative Corona Discharge Characteristic in Case of Corona Discharge Wire Heating电晕线加热情况负电晕放电特性研究
11.A sudden feeling of sickness, faintness, or nausea.恶心,晕眩突然感到恶心、眩晕或反胃的
12.Primary Studies on Sterilization of Corona and Charged Spray电晕放电与电晕荷电水雾表面灭菌的初步研究
13.Coupling of Methane Under Pulse Corona Plasma Ⅱ.Effect of Gas Additives脉冲电晕等离子体作用下甲烷偶联反应的研究Ⅱ.反应添加气的影响
14.Study on the Electric Field Characteristics of Corona Wire Group with the Shielding Tube;带电晕屏蔽管电晕线组电场特性的研究
15.The Effect of Temperature and Humidity on DC Conductor Corona Current in Corona Cage温度、湿度对电晕笼中直流导线电晕电流的影响
16.Study of Corona Phenomena and Its Influence Factor on DC Conductor in a Corona Cage;电晕笼中直流导线电晕现象及影响因素的研究
17.The Influence of Temperature and Humidity on Corona Characteristics of DC Conductor in Corona Cage温度、湿度对电晕笼中导线直流电晕特性的影响
18.Effect of Air Pressure on DC Corona Performance of Conductor in Corona Cage气压对电晕笼中导线直流电晕特性影响
相关短句/例句

discorona反电晕
1.This device has advantages of effectively eliminating the damage of discorona,increasing the dust removal efficiency and lowering electrical energy consumption at large amplitude.分析了国内几种高压电源的特点及性能,详细介绍了国内研发的提效节能型电除尘器高压供电控制设备,该设备具有有效克服反电晕危害,提效减排的同时可大幅降低能耗等特点。
2.The discorona and re-entrain dust are two key issues to improve the efficiency of the electric precipitator.反电晕和二次扬尘是提高电除尘器的除尘效率所面临的两大难题。
3.The discorona and re-entrain dust are two key iss ues to improve the efficiency of the electric precipitator.反电晕和二次飞扬是电除尘器遇到的两大技术难题,本文提出了一种宽支撑防风型芒刺电晕线,它加大了阴极收尘面积,防风措施减小了阴极二次飞扬。
3)Anti-Electric-Corona反电晕
1.In addition,as the existence of anti-electric-corona,if blindly or with previous experience setting up high-voltage control parameters of electric field,it would only increase electricity consumption of electric precipitator.托电5~6号炉电除尘电场内部普遍存在反电晕现象,影响了除尘器的除尘性能。
4)anti-electric-corona discharge反电晕放电
1.Using the model a nonstationary anti-electric-corona discharge signal is modeled.使用该信号模型对非平稳的反电晕放电信号建模,通过模型参数提取信号的特征,根据提取的特征判别反电晕放电现象是否发生。
5)corona reactor电晕反应器
1.The decomposition of trichloroethylene (TCE) in a wire-in-tube pulsed corona reactor was experimentally investigated.采用线-筒式电晕反应器对三氯乙烯在氮气中和有氧气存在情况下的降解效果进行了实验研究。
6)back corona breakdown point反电晕击穿
1.It is necessary to determine charged dust layer thickness at back corona breakdown point in electrostatic precipitation in order to select rapping periodicity reasonably.为了合理地确定静电除尘器清灰振打周期,通过理论与试验方法确定静电除尘器粉尘层反电晕击穿厚度很有必要的。
延伸阅读

电晕又称“电晕放电”。导体表面及其附近出现辉光并伴有咝咝声的放电现象。由于高压使气体或液体介质电离而产生。能引起电能损耗,并对通信和广播有干扰。但可用于静电除尘、污水处理、空气净化等方面。