能量損失 的英文怎麼說

中文拼音 [néngliángsǔnshī]
能量損失 英文
energy degradation
  • : 能名詞(姓氏) a surname
  • : 量動1. (度量) measure 2. (估量) estimate; size up
  • : Ⅰ動詞1 (減少) decrease; lose 2 (損害) harm; damage 3 [方言] (用尖刻的話挖苦人) speak sarcas...
  • 能量 : 1 [物理學] energy; amount of energy 2 (能力) capabilities; capacity; 能量不滅 conservation of e...
  • 損失 : 1. (失去) lose 2. (失去的東西) loss; wastage
  1. The result in either case is an energy deficiency.

    不論哪種情況結果都會導致能量損失
  2. In the first place, the fractional decrease in neutron energy per collision is, on the average, greatest for light nuclei.

    第一,平均來說原子核愈輕,每次碰撞后中子的能量損失分額就愈大。
  3. The effect of groyne length and layout on water surface is analyzed in the paper. based on the results of simulation and experiment, the local energy loss of the flow due to the groyne is studied. consequently the surface variation and height of damming are also analyzed

    論文分析了丁壩長度與布置對水面線的影響,根據流場、紊動場模擬結果和實驗結果研abstract究丁壩造成的水流局部能量損失,並對水面變化和丁壩奎水高度進行了分析。
  4. Each interaction produces an energy loss and deflection.

    每次相互作用都引起粒子能量損失和方向偏轉。
  5. The quark energy loss of fast quarks in nuclear matter

    夸克在核環境中的能量損失
  6. Throughout the analysis and calculation of thermoelectricity cogeneration, exergy analysis method, we can know the system ' s energy lose ratio and its reason, and endeavor to improve the technology for energy return

    本文採用了(火用)分析與計算方法分析了系統中能量損失的數和部位,為節技術改造提供有效的依據。
  7. The energy losses are due to turbulence.

    能量損失起因於紊流。
  8. The article takes a 600mw natural cycle drum boiler ( soot blow using steam ) as investigating object, establishes soot accumulation loss and soot blowing energy loss models for its water cooling wall, superheater, economizer and air preheater respectively, set up instructions for soot blower operating. simulating calculation results are compared with site data to verify usefulness of key models. the article introduced the operation optimizing design of soot blowers of yanzhou no2 power plant based on theoretical research

    本文以600mw汽包自然循環鍋爐(蒸汽吹灰)為具體分析對象,分別建立其水冷壁、過熱器、省煤器、空預器的積灰和各受熱面吹灰能量損失的模型,建立相應的吹灰器運行規則指導,對設計中的關鍵模型問題,通過模擬計算及與現場數據作比較的方法,驗證其可用程度。
  9. Eels study of relativitstic quantum mechanics heory

    利用電子能量損失研究相對論子力學理論
  10. Using flyer velocity gained from energy characterizing method, definite parameters of flyer and explosive, deterministic parameters of initiation system critical initiation energy to flyer of explosive can be theoretically calculated. associating with critical initiation voltage of explosive experiment measuring comparisons and evaluations can be conducted for flyer sensitivity of explosive

    利用能量損失法求出的飛片速度以及已知的飛片參數、炸藥參數、起爆系統中的既定參數,可以對炸藥的飛片臨界起爆進行理論上的計算,結合實驗測的炸藥臨界起爆電壓值,可以對炸藥的飛片感度進行比較和評價。
  11. Msp430 ultra - low power consumption chip was adopted as the mcu of the controller inorder to adapt to the limited power supply and working space on the compressed air powered vehicles ( capv )

    節流控制是一種不可逆的變化過程,存在較大的能量損失,不利於系統的高效利用。
  12. The centrifugal pump for oilfield waterflooding and oil transfer worked with low pump efficiency owing to unstable load and its energy loss is fairly large

    油田注水集輸系統離心泵由於載荷經常變化,大多不在其額定工況點工作,泵效低,且需要用泵出口閥調節流,產生一定的泵管壓差,造成較大的能量損失
  13. At the same time broaden the spectrum as result of energy loss fluctuations.

    與此同時,電子譜由於能量損失的漲落而展寬。
  14. The study result also shows that there is significant energy exchange between all the pipe sections connected to the same junction, therefore, those flow phenomenon can not be accurately reflected if neglecting or adopting the constant energy loss coefficients

    研究結果還表明,與同一結點相接的各管段間存在顯著的交換,因此,忽略或採用恆定不變的能量損失系數均不正確地反映這些水流現象。
  15. But for real microfiltration, the distribution of shear stress on the membrane of the module with outside helical flow would have benefit to make smaller number of particles deposit on the membrane. ( 2 ) by means of orthogonal test and regression method, four new models, trans - membrane pressure model, flux model, trans - module pressure drop model, and efficiency model, were established, which roundly describe the performance of outside helical mf by depicting the flux, energy loss, and handling capacity simultaneously

    ( 2 )採用正交回歸實驗,在無顆粒沉積的理想情況下,建立基於層流數值解的膜器跨膜壓力模型、過濾通模型、過膜器的壓力模型和膜器過濾效率模型,首次從通能量損失及膜器對料液的處理力等三個方面,更全面地對外旋流方式下的微濾過程進行了描述。
  16. Abstract : this paper uses the topology theory to analyze the surface flow spectrums of straight, positively curved and negatively curved cascades with relative tip clearances of 0. 023 and 0. 036, finds apparent differences of topology and vortex structures in the blade tip and the suction side wall corner of single type of cascade with this two clearances, and studies the mechanism of the difference formation as well as their effects on the energy loss

    文摘:應用拓撲原理分析了葉頂相對間隙為0 . 023和0 . 036的渦輪直葉柵和正、反彎葉柵的壁面流譜,發現在兩種間隙下同類葉柵的拓撲與旋渦結構在葉頂和吸力面壁角明顯不同,探討了差別形成的機理及其對能量損失的影響
  17. The research result demonstrates that along with the increment of reynolds number, the root mean square value of outer fluctuating magnitude of the external diameter in fall frequency band increases, the root mean square value of fluctuating magnitude of the external diameter in high frequency band decreses, demonstrating that the fluctuation of flexible pipe wall changes fluctuation don field of original rigid pipe, large - size eddy motion increases and small - size eddy motion decreases, this reduces energy loss and increases friction reduction effectiveness

    研究結果表明:隨著雷諾數的增加,全頻帶的外徑脈動的均方根值加大,但高頻帶外徑脈動的均方根值減小,說明柔性管管壁脈動確實改變了原剛性管的脈動流場,大尺度渦的運動加劇,低尺度渦運動減弱,從而使得能量損失減少,減阻效果增大。
  18. It is interesting to inquire into the exact mechanism of this energy loss.

    確切地查明這一能量損失的作用過程還是有意義的。
  19. In order to save the energy, we analysed the loss of pressure caused by pipes and adopted measures to decrease the energy loss and increase the power usage rate

    摘要對管道的壓力進行了分析,並在設計液壓系統管路時採取了減少能量損失的措施,提高功率利用率,以達到節的目的。
  20. Fluid physical properties, pressure measurement, forces due to static fluids, bernoulli ' s equation, general energy equation, energy losses due to friction, pipe line systems, pump selection and application, open channel flow

    本課程含流體物理性質、壓力測、沉體平面和曲面所受作用力、柏努利方程式、一般方程式、摩擦形成的能量損失、管線系統、明渠流、泵的選擇與應用。
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