流槳 的英文怎麼說

中文拼音 [liújiǎng]
流槳 英文
trail the oars
  • : Ⅰ動1 (液體移動; 流動) flow 2 (移動不定) drift; move; wander 3 (流傳; 傳播) spread 4 (向壞...
  • : 名詞1. (劃船用具) oar; paddle 2. (螺旋槳) propeller
  1. Code for propeller cavitation tests in uniform flow carried out in cavitation tunnel

    空泡水筒均中螺旋模型試驗規程
  2. In this dissertation, through computer simulation, the problems of modeling, control and guidance of auvs are presented. the first part of this dissertation addresses the problem of dynamically modeling of auvs, and derives thrusters " two - dimension nonlinear dynamic model, which has axial flow speed and propeller rotational velocity as two state variables, voltage or current of motor as inputs, and thruster force and torque as output. the second part focuses on the nonlinear adaptive sliding mode control of auvs in diving plane and steering plane

    本論文系統研究了自主式水下航行器的建模、非線性自適應滑模控制、以及深度調整和水平面導引方法等問題,具體成果和創新點如下1 、根據體力學理論,建立了螺旋推進器的動態模型,它以螺旋速度v _ p和螺旋轉速n為狀態變量,以電機施加轉矩為輸入,螺旋推力t和轉矩q為輸出。
  3. The propeller turns a small d. c. generator.

    螺旋帶動一個小型直發電機。
  4. Building up the math - model of transient for the all hinge of riverbed power station with the kaplan turbine, building a simulation software for this kind of system and calculate the transient which take into account the effect of the ground swell on the riverbed. this program also can calculate the different kind of the kaplan turbine

    針對轉機組河床逕式電站的樞紐系統,建立了全樞紐過渡過程的計算模型,並且編制了相應的計算程序,進行了計及河床涌浪的全樞紐系統的過渡過程模擬計算,該程序能對同一樞紐中含有不同型號機組的電站同時進行過渡過程計算。
  5. Compared to an ordinary rudder, the value of lift coefficient of ichthyoid rudder is about 30 % higher and the maximum rudder angle of it nearly reaches 45 degrees. ichthyoid rudder is a design under such a conception as to effectively utilize the propellers slipstream for rudder action, and featured by having a fish - shaped one - piece construction that is to say - no part of ichthyoid rudder can move in the water

    其研究的魚形舵是一個沒有在水下移動的魚尾形剖面單片結構,增加了全舵的剖面拱度,使螺旋的折射水量增強,進而增大了水動力的作用,使之比普通線形舵的升力提高30左右。
  6. The oarsmans ' s screams echoed off the bluff while the archers flailed wildly in the current. from the way they were splashing, neither man could swim

    "弓箭手在水中瘋狂拍打,操手的慘叫聲? ?在巖壁之間.從那裡每個人都只能涉水而過,也沒人可以游泳.
  7. The potential flow theory is then applied to the overlap of the slipstream and the flow over the wing

    用位理論來處理螺旋與機翼繞的迭加。
  8. By this time we had got so far out of the run of the current that we kept steerage way even at our necessarily gentle rate of rowing, and i could keep her steady for the goal

    到目前為止,我們已經完全不受湍左右了,只需用必要的平穩的速度劃,即可保持這個航向,而我也將舵掌得既穩又準了。
  9. Power curve measurement and analysis for type of axial - flow stirrer

    一種高效節能型軸式攪拌功率曲線測定及分析
  10. The influences of structure variables such as impeller types, baffle configurations, gas sparger, and operational variables such as gas rate, particle fraction on critical suspension speed of floating particle in an agitated vessel were investigated

    摘要探討了攪拌型、擋板和氣體分佈器等結構因素及氣體量、顆粒質量分數等工藝因素對下沉顆粒三相體系臨界攪拌轉速的影響。
  11. The corrosion current and impressed against - corrosion current of a ship modulated by shaft ' s rotation will generate an extremely low frequency electric field ( elfe ) which becomes a kind of important characteristic signal in sea water

    摘要艦船的腐蝕和防腐電經螺旋轉動的調制后在海水中會?生極低頻電場,成?一種重要的特徵信號源。
  12. In the second part, firstly, the mathematical model for predicting hydrodynamic characteristics of varivec propeller under steady or unsteady condition are present, based on the general propeller lifting - surface theory, potential flow theory and green theorem. then, theoretical calculation methods for predicting hydrodynamic characteristics of varivec propeller designed above paragraphs are present, based on the finite basic solution method, the unsteady vortex lattice method and hess - smith method

    在理論計算部分,本文首先基於常規螺旋升力面理論、勢理論和格林定理建立了定常和非定常狀態下全方向推進器水動力性能計算的數學模型,然後利用有限基本解法、非定常渦格法和赫斯?史密斯方法對全方向推進器定常和非定常狀態下的數學模型進行了數值離散,接下來針對前面所設計的全方位推進器進行了數值預報。
  13. The lifting - line and lifting - surface design method, the harmonic analysis method based on the panel method, new section design ways, the effective operating curves are integrated into a whole design system of the unsteady propeller, the design system is effective and reliable by the design example, the model test and the application to the full scale ship

    本文把升力線和升力面設計方法、基於面元法預報螺旋非定常性能的諧調分析方法,新剖面設計方法、有效運轉曲線計算方法組合為一套完整的非均勻場中螺旋設計計算系統,經實例設計和模型試驗及實船的應用,該設計系統是可靠且有效的。
  14. Based on the green ' s formula and the assumption of the propeller blade ' s thin sections, a lifting - surface method of propellers with the vortex lattice and equal source panel distributions on the mean camber surface has been introduced for the prediction of steady propeller ' s hydrodynamics in this paper. an approximate kurta condition was applied

    基於creen公式和薄翼理論假設導出的升力面方法,採用在螺旋拱弧面上分佈離散渦、源布置方法預報均勻場中的螺旋的定常性能,螺旋尾渦面上壓力連續性條件採用近似的kutta條件處理。
  15. 3. high performance folding propeller and spinner 4. easily assembled and enjoyable

    3高效率的折疊螺旋和鋁整
  16. 180 gearbox, 6x4 propeller and spinner radio : 3ch, receiver and esc combo

    馬達: 180電機配180輪箱, 180整罩和6x4直
  17. A mathematic model of the motor is builded and emulated through matlab. the low - speed and constant - torque, high - speed and constant - power state is analyzed and researched, also the software approach of simulation to the driver has been done, a digital signal processor tms320lf2407 is developed successfully to control the perm square - wave bldcm driving airscrew of solar powered unmanned engine. it is useful to the further study

    在matlab下建立了電機的數學模型,通過計算機模擬,驗證了數學模型的正確性,同時在理論上對低速恆轉矩高速恆功率運行進行了分析與研究,提出了一種用模糊控制的方法實現恆功率控制,並對驅動器進行了系統模擬,成功的研製了以數字信號處理控制器tms320lf2407為控制核心的驅動器,控制無刷直電動機驅動太陽能無人飛機的螺旋,為後面繼續研究工作提供了參考。
  18. Trail the oars

    流槳!拖
  19. The effects of hydrofoil impeller on erythromycin fermentation and variation of fermentation parameter such as broth viscosity, dissolve oxygen, fermentation unit, power consumption on the scale of 20 ton fermentor, etc. with time were studied

    摘要在20t工業發酵罐中,研究了翼形軸流槳攪拌對紅?素發酵過程的影響,重點考察了粘度、溶氧、效價等過程參數變化,以及攪拌功耗與發酵產量之間的關系。
  20. The results showed that process parameters varied with time in fermentation was distinct for different agitator and the hydrofoil impeller instead of the disc turbine impeller might significantly reduce power consumption under the same condition

    研究結果表明: ( 1 )與傳統的渦輪攪拌相比,翼形軸流槳攪拌其發酵過程參數(粘度、溶氧、效價等)隨時間的變化曲線有明顯的差異; ( 2 )在相同的生產條件下,用冀形軸流槳代替渦輪可有效提高生產效率。
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