internal discharge 中文意思是什麼

internal discharge 解釋
內部放電
  • internal : adj 1 內的,內部的 (opp external)。2 國內的,內政的。3 體內的,內服的。4 內在的,本質上的,固有...
  • discharge : vt 1 發射(炮等),打(槍),射(箭)。2 起,卸(貨)。3 排泄,排出,放出(水等)。4 釋放;解除,...
  1. Small hole electrical discharge internal grinding machine

    電火花小孔內圓磨床
  2. For example the concrete faced rock - fill dam in frigid zone is distinctive in terms of frost resistance and durability, cushion material seepage prevention and frost heave, adaptability of darn filling with season coordination among construction diversion, flood discharge and the whole construction schedule etc. lianhua construction which is situated in mudanjiang basin of heilongjiang province firstly creates the successful record of construction of large - size faced rock - fill dam in frigid zone, a series of internal and external problems not having a precedent to go by have been solved

    如在面板的抗凍耐久性、墊層材料防滲和凍脹特性、壩體填築與季節的適應性、導流和度汛與總體進度的協調等方面,寒冷地區混凝土面板堆石壩均有其獨特之處。蓮花工程位於黑龍江省牡丹江流域,首創了高寒地區修建大型面板堆石壩的成功記錄,解決了一系列國內外均無先例的難題。
  3. Abstract : in this paper, the existed problem of oil discharge s crew at the bottom of internal combustion engine oil reservoir is pointed out, th e consequence is analysed, then puts forward the performance objective required i n the course of draining failure oil on the base of the article, the special oil discharge valve of internal lubricating oil is introduced

    文摘:指出了內燃機油底殼上放油螺絲在使用中存在的問題,分析由此而引起的後果,提出了排放失效機油過程中所需達到的要求,介紹了內燃機機油專用放油閥門。
  4. Too much cnts contributed no effect in the improvement of overall performance of the batteries. the batteries with nano - scale coo shows better active properties, the addition of nano - scale coo further the conductivity of the nickel electrode, thus lower the internal resistance of the batteries, higher discharge voltages are achieved accordingly. for the formation of the better conductive net of coooh, the effectivity of discharge rise, that contributes positive effect to the high rate capability of the batteries

    浙江人學碩十學位論文摘要正極添迦納米coo的ni / mh電池具有較好的活化性能,納米coo更好地增強了鎳正極的導電性,進一步減小了電池的內阻;正極添迦納米coo的ni / mh電池還具有較高的放電平臺;由於納米coo的納米結構,以及相對于普通c00更大的比表面積,會在堿液中溶解形成更均勻緻密的co0oh導電網路,從而提高了放電效率,對電池的高倍率性能也有積極的影響。
  5. The horizontal swirling flow internal dissipater tunnel being built in gongboxia power station will be the first one reconstructed from a diversion tunnel whose discharge reaches to 1000m vs and water head is more than 100m in china. its scheme ' s argumentation, test research and future apply will have important meanings to the design. research and engineering application of internal dissipation discharge tunnel with swirling flow, will powerfully promote engineering application of this new kind of dissipation mode, which may solve some high velocity problems in high dam construction and provide a engineering example for technological and economical augmentation in a diversion tunnel reconstruction. it is of theoretical and practical importance to promote hydraulic structure researches and development

    公伯峽水電站右岸旋流內消能泄洪洞是國內第一個泄量達1000m s 、水頭超過100m ,即將修建的旋流式內消能泄洪洞,其方案的論證與試驗研究以及建成后投入使用,將在國內外旋流式內消能泄洪洞設計、研究與工程應用中具有重要的意義,將有力的推動這一新的消能形式在工程中的應用,從而為解決高壩建設中泄水建築物的高速水流問題與導流洞改建的技術與經濟問題提供工程實例,對推動與發展水工水力學的研究與發展均具有重要的理論與實踐意義。
  6. Ni - cd cylindrical cell has the properties of small internal resistance, long service life, resistant to over charge and discharge, low self discharge, wide operation temperature range ( - 20 + 40 ) and high reliability. they are suitable for high rate discharge and widely used in the fields of electrical tools, railway trains, lighting, fire prevention and military

    鎘鎳圓柱密封堿性蓄電池具有內阻小,使用壽命長,耐過充過放電,自放電小,使用溫度范圍寬( - 20 + 40 ) 、可靠性高等特點,適用高倍率(大功率)放電使用,廣泛應用於電動工具、列尾電源、照明、消防、儀器儀表以及軍事領域。
  7. Auto - recognition to discharge types in on - line pd monitoring system could be used to find out internal partial defects and the relevant discharge development degree in time, and then prevents equipment from the coming faults

    局部放電在線監測系統中的放電類型自動識別,能夠及時發現絕緣內部局部缺陷及放電發展程度,防止事故發生。
  8. When koh concentration is increased, discharge capacity and internal resistance increase, voltage plateau decreases

    ( 3 )當在堿液中增大koh濃度時,放電容量升高,內阻升高,電壓平臺降低。
  9. The results shows : under high - rate discharge conditions, the batteries with cnts added in the positive electrodes exhibited much better cycling stability, higher discharge voltage and high - rate capability. the increase in internal resistance of the batteries with cnts was lower than that of the batteries without cnts during charge - discharge cycles. the addition of 0. 5 wt. %

    結果表明:在高倍率放電的條件下,正極中添加少量cnts的ni mh電池具有更好的循環穩定性、更高的放電平臺以及更好的高倍率性能;正極中添加少量cnts製成的mh ni電池在高倍率放電的循環過程中內阻升高較小;正極添加0 . 5wt . cnts的電池具有理想的高倍率性能和綜合性能,過多的加入cnts無益於電池性能的提高。
  10. Comprehensive understanding of how the rib geometries affect the discharge coefficients of the film holes and how the holes " extractions affect the pressure losses of the passage, would allow designers to optimize the layout of the internal cooling passages of the blades for acquiring higher cooling performances

    為詳細了解此種通道中的肋對氣膜孔出流特性的影響以及氣膜孔出流對通道流阻特性的影響,本文採用了實驗和數值模擬相結合的方法進行了系統的研究。
  11. By contrasting the lioh or naoh data to koh at 7m and 8m, the change of the li + or na + concentration has little effect on the discharge capacity, internal resistance, voltage plateau and high rate discharge capability

    通過與koh濃度在7m與8m的數據進行對比,結果發現, li或na離子濃度的改變對放電容量、內阻、電壓平臺以及高倍率性能影響不明顯。
  12. Firstly in the paper the research of hydraulic characters and the optimize of structure have being carried out on the four bigger design schemes of permanent internal dissipation discharge tunnel reconstructed from the right bank ' s diversion tunnel of gongboxia power station with a method of theoretical analysis combined with test comparisons. on this basis, two form swirling flow internal dissipation schemes, vertical and horizontal axis are recommended to the construction unit of the station as the schemes to be selected next

    本文採取理論分析與試驗比較相結合的方法,首先對黃河公伯峽水電站右岸導流洞改建為永久式內消能泄洪洞的四個較大設計方案進行了水力特性的試驗研究與體型優化,在此基礎上,向建設單位分別提供了豎井旋流內消能的推薦方案與水平旋流內消能的推薦方案。
  13. When reducing the discharge cut - off voltage of the second, the third, the forth step to 850 mv during activation, discharge capacity is improved remarkably, increasing about 24 mah. but middle point voltage decreases and internal resistance increases about 1 mq

    ( 2 )化成時降低電池第二、三、四步放電截止電壓到850mv ,能顯著提高電池放電容量,提高幅度達24mah左右,但中點電壓有所降低、內阻也升高了將近1m ( ) 。
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