shaft generator system 中文意思是什麼

shaft generator system 解釋
軸帶發電機系統
  • shaft : n 1 箭;箭桿。2 (槍、槌、斧等的)柄;矛。3 【植物;植物學】稈;莖;柄。4 【動物;動物學】羽軸;...
  • generator : n 1 產生者,生殖者,創始者。2 發電機,發生器。3 【音樂】基礎低音。4 = generatrix a D C generator...
  • system : n 1 體系,系統;分類法;組織;設備,裝置。2 方式;方法;作業方法。3 制度;主義。4 次序,規律。5 ...
  1. If the numerical value line resonance frequency plus some shaft connatural frequency of generator is equal to operation frequency, it brings about coupling resonance between generator and system, which maybe results in shaft rupture of synchronous generators

    當線路電氣諧振頻率與同步電機的軸系某一固有振蕩頻率近似互補于電網工頻時,將導致機電系統的耦合振蕩,嚴重的會造成同步發電機大軸的扭斷。
  2. The prototype of simulating is the most presentative shaft generating system - simens shaft generator, which is very popular and simple in nowadays marine ships

    第四章主要研究了船舶廢氣透平發電機。對船舶廢氣透平發電機進行了數學建模及模擬。
  3. Torsional interaction exists between hvdc converters and turbine - generators, and negative electrical damping provided by hvdc may cause subsynchronous oscillation ( sso ) that can lead to turbine - generator shaft failure and electrical instability at oscillation frequencies lower than the fundamental system frequency

    高壓直流輸電( high - voltage - direct - current - - - - hvdc )系統與臨近同步發電機組之間存在著扭振相互作用, hvdc的電氣負阻尼作用有可能引起機組在次同步頻率范圍的扭轉振蕩。
  4. The simulation of the ship shaft generator system

    遠洋船舶軸帶發電機系統的模擬
  5. The paper analyzes the composition of siemens shaft - generator with rectifier and thyristor inverter and its working principle, and introduces the independent power supply, the operation of the system, automatic adjustment, and the function of synchronous condenser, contributing to upgrade the understanding level and cognitive ability of shipping mechatronics managerial staff

    摘要文章分析了西門子帶整流逆變中間環節的軸帶發電系統的組成及工作原理,介紹了單獨向電網供電方式、系統的運行、自動調節以及調相機在系統中的作用,有助於提高船舶機電管理人員對這一系統的理解和認識能力。
  6. Sgs shaft generator system

    軸發電系統
  7. In order to make the full use of the facility to maintain the machine rotating system, the alternative excitation setting, which remains by altering the excitation setting, is changed into subsidiary generator running on the same shaft. and it can enhance the work capacity of the whole unit

    為了充分利用設備,保持原機組的機械旋轉系統狀態,現將勵磁系統改造后空余出的交流勵磁機改為同軸運轉的副發電機,增加整體機組的工作容量。
  8. With the development of the electric power industry, the capacitance of a turbo - generator has increasingly become larger, which risk the torsional oscillation in the flexible shaft system of large turbine - generators. the problem of shaft torsional oscillation has become the key technology need to be solved urgently in the development of large power system and unit

    隨著電力工業的發展,汽輪發電機組的單機容量正日益大型化,導致機組軸系扭轉振動的危害性日益突出,軸系扭振問題已成為發展大電網和大機組所急需解決的關鍵技術問題。
  9. Chapter 3 will focus on the shaft generator simulating system. it presents all the important components of shaft generating system belong to maritime ships

    第三市分析廠軸帶發電機系統及其模擬系統的結構和組成,由十在實際船舶中,
  10. The level of automatization, performance and technology of equipment onboard these vessels have been improved to a great extent, and by importing, assimilating and then absorbing technology from abroad, most of equipment have reached the world level do as the developed countries, such as the new type of monitoring devices ( stivc2100 pm & ma ) for electric generator and main engine monitoring system ( codad ) for parallel operation on double - engine - double - shaft - driven ships, which are to be put into use onboard

    在這些船舶上,設備的電氣自動化程度、性能和技術水平已有了很大程度的提高。不少設備通過引進、消化、吸收國外先進技術,如新一代stivc21oopm & ma電站監控系統以及codad雙軸系雙機並車主機監控系統已研製開發成功並不期裝船使用,亦已達到了國際上先進國家的水平。進入21世紀后船舶電氣自動化程度將進一步提高。
  11. Therefore, it is necessary for us to conduct a series of principle analysis on different sections of the station such as the fuel system, lube system and cooling system of the diesel engine for generators, and the shaft generator as well as the main switchboard etc. it is also important to carry out at meantime a number of reliability tests and analyze the test results so as to assure all the units of the station will run smoothly

    因此,我們通過對船舶電站中柴油機的供油系統、潤滑系統、冷卻系統、軸帶發電機、主配電板等各個環節從原理上進行分析,並進行必要的可靠性試驗,對試驗數據進行分析,確保船舶電站各個環節的運行良好。
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