汽流 的英文怎麼說

中文拼音 [liú]
汽流 英文
steam flow
  • : 名詞1. (由液體或某些固體變成的氣體) vapour2. (水蒸氣) steam
  • : 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...
  1. The single chip micyoco ( scm ), 89c2051, is used to design an intelligent interface box to connect the modem with the cdv - 12 gas volume corrector

    採用89c2051單片機開發了一個智能介面盒,用於連接modem和蒸汽流量儀表。
  2. The outflow of steam from one well can be more than 100 tons per hour, but such wells are exceptions.

    一口井的蒸汽流量能超過100噸小時,但這種井是一種例外。
  3. What are sidestripper steam rate philosophies, if applicable

    側線提塔蒸汽流量控制原理是什麼(如採用) ?
  4. The easiest place to look for turbulence is in the stream of steam rising from a boiling teakettle.

    尋找湍最方便的場合莫過于燒開的茶水壺冒起的蒸汽流了。
  5. Software design for steam flow totalizer

    汽流量積算儀的軟體設計
  6. The results shows that temperature in the porous dried layer varies - as a exponential discipline whose changing scope is determined by the mass flux and a linear distribution in temperature exists across the frozen layer

    結果表明,多孔乾燥層溫度按指數規律變化,變化幅度取決於水汽流率,凍結層溫度按線性分佈,預測凍干時間與實際結果相符。
  7. The football team stopped the steam stream with beams

    足球隊用橫桿堵住了蒸汽流
  8. ( 2 ) assistant signals each other dispel. according to three impulse control water lever error, designing three impulse pid cascade control system

    根據三沖量水位調節系統控制水位誤差,設計採用了三沖量pid串級控制方式,採用輔助信號蒸汽流量和給水量對消方法消除水位偏差。
  9. The result of checking analysis shows that the model can be used for calculating the energy dissipation while steam passing through a restrictive device, being more convenient and accurate than using traditional method

    校驗分析結果表明,用該模型計算蒸汽流經阻力件的能量損失,較傳統方法方便、準確。
  10. Based on this model, the model of greenhouse temperature is set up when the heating system is using. considering the vapour heating as the modeling object, the dynamic formula between vapour temperature and vapour flux of the pipe is set up

    以蒸加溫為建模對象,建立管道內蒸溫度跟蒸汽流量的動態關系式,組成溫室用蒸管道進行加溫時的溫度對象模型。
  11. The steam path of the steam turbine through which steam flows consists of nozzles, and the moving blade, fixed blade and other auxiliary equipment

    輪機的通部分即蒸汽流過並做功的部分,其中包括噴嘴,隔板以及動、靜葉片以及相應的封裝置。
  12. The study also shows that the unidentified steam leak quantity is not exceeded to 0. 3 % of the main steam flow after the system is isolated. so the steam leak of the thermal system is little, and the system is sealed well

    研究結果還表明,系統隔離后不明泄漏量均不超過主汽流量的0 . 3 % ,整個熱力系統外漏量較少,系統嚴密程度較好。
  13. In order to accurately calculate the available energy dissipation resulted from the steam flowing through a restrictive device, a new view point for measuring energy in steam piping network system has been put forward, i. e. a model for computing the available energy dissipation has been obtained through entropy equation in occurrence process of the resistance, which is deduced from steam condition equation of iapws - if97

    為了準確計算蒸汽流經阻力件產生的可用能損耗,提出了蒸管網系統能量計量的新觀點,即通過iapws - if97的蒸狀態方程,推導出阻力發生過程的熵方程,得到可用能損失計算模型。
  14. Based on the hydrodynamic, by using momentum theory to the liquid in the flow channel, the computational formula of the air exciting - vibration force is acquired. by using four - step runge - kutta method, the periodic response results of the elastic rotor system with one single - disc are gained. then the dynamic characteristics of the rotor system at the certain rotate speed and the certain physic parameter of system are analyzed by using the phase spaces and poincare maps of this system

    基於體動力學,通過對葉片道內的體模型應用動量定理,得到此汽流激振力模型,並採用四階龍格庫塔法,得出了單盤彈性轉子系統的周期響應規律,然後根據系統的相軌跡及poincare映射圖,分析了系統在特定轉速及特定的轉子系統參數下的運動特徵。
  15. An analytical model for the forced condensation of steam in the presence of noncondensable gases was proposed based on the mass, momentum and energy conservation equations of condensing mixture flow, involving the analogy between heat and mass transfer in the gas / liquid interface

    總之,蒸汽流量、空氣含量和系統壓力是影響蒸氣冷凝的重要因素。相似的基礎上,建立了豎直管內蒸氣強迫對冷凝的一維分析模型。
  16. A correlation was studied out here :, for experiment with sparger 1 # ;, for experiment with sparger 2 #. sparger decreased interfacial heat transfer coefficient, total clotted liquid and steam energy transfer and weakened surface temperature vibration. it also decreased thickness of hot water layer, attenuated steam condensation and shortened the time of balance

    加裝遮板使實驗初期階段的表面冷凝換熱系數hif降低76 93 ;減少了累計凝結量67以上;降低蒸汽流能量的傳遞,使表面溫度波動顯著降低;減少了熱水層的厚度;減緩了蒸凝結的劇烈程度,大大縮短了系統壓力平衡需要的時間。
  17. A jeffcott rotor which is simple supported at its two ends is established first in this article. the disc comes under the effect of the air exciting - vibration force due to the eccentricity

    本文首先建立了一個兩端簡支的jeffcott轉子模型(短直葉片轉子) ,圓盤偏心時受到不均勻間隙汽流激振力的作用。
  18. The intelligent instrument module achieves the functions of collecting and processing hot network stream parameters, and offers multiple communication interfaces ; the communication module provides three communication ways of internet > pstnnwireless station to realize the function of central collecting and managing steam flow information ; the monitoring management module, which adopts advanced programming languages, performs the functions of data collection, exchange, disposal, query and report print and so on

    智能儀表模塊完成對熱網蒸參數的採集和處理功能,並提供多種通信介面;通信模塊提供internet 、 pstn 、無線數傳電臺三種通信方式,實現了蒸汽流量信息的集中採集及管理;監測管理模塊通過高級語言編程完成了數據採集、交換、處理、查詢及報表列印等功能。
  19. The frequence and modal of main stream piping were analysed under the condition of different velocity of stream and the valve taken as the centralizing mass. this paper also gives the responses of steady state under the condition that the frequency of forced vibration is 4hz 、 8hz 、 12hz respectively

    將閥門作為集中質量處理,分析計算不同蒸汽流速下,某輪機主蒸管道系統的振動頻率和振型,並給出了激振力頻率分別為4hz 、 8hz 、 12hz時該管道系統的穩態響應。
  20. Measurements were made of system pressure, mass flow rate of steam, air, and cooling water, temperatures of condensing flow and cooling flow, and the water level of boiler. the major phenomena observed in the present experiment are similar to those by other investigators. the mass flow rate of steam, the system pressure and air content are the most important factors affecting steam condensation

    實驗結果表明,維持二次側冷卻水量不變,無論對于純凈蒸還是含有空氣的蒸冷凝,隨著蒸發生器加熱功率的增大(即蒸汽流量增大) ,有效冷凝段長度將加長;當蒸中含有少量空氣,有效冷凝段長度也會明顯加長;提高系統壓力,有效冷凝段長度將縮短。
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