移送泵 的英文怎麼說

中文拼音 [sòngbèng]
移送泵 英文
shifting pump
  • : Ⅰ動詞1. (移動) move; remove; shift 2. (改變; 變動) change; alter Ⅱ名詞(姓氏) a surname
  • : 動詞1 (運送; 傳送) deliver; carry 2 (贈送) give as a present; give 3 (伴送; 送別) see sb of...
  • : 名詞(吸入和排出流體的機械) pump
  • 移送 : removal
  1. In pumping fluid with gas, pressure boost can be improved by enhancing the pump rotation speed, thereby improving the performance of the pump to a certain degree ; when the gas content is constant, by increasing the inlet pressure, the pressure boost can be enhanced and the pump efficiency be improved remarkably ; when the gas content is rather high, there will be a problem of matching between the gas pressure and the fluid pressure ; the performance of the multiphase pump can also be improved by means of rational design of buffer vessel and homogenizer

    試驗分析認為,氣液混輸工況下,提高轉速可以提高增壓,在一定程度上能改善多相的工作性能;含氣率一定時,增加進口壓力,可使多相增壓值增大,效明顯增加,最大含氣率點后,但含氣率很高時,存在氣液壓力相匹配問題;改進緩沖罐和均化器的設計,有利於氣液互相夾帶,避免氣囊產生,可改善多相的輸性能。
  2. Air piston pump adopts the theory that " pressure " applying force on various areas and can produce various " acting force ", the pump takes the origin that the compressed air is compressed energy, and transforms the pressure of compressed air into more fluid pressure, pressing fluid move in order to achieve the aim of high viscosity and ultra - viscosity fluid

    氣動柱塞是利用「壓力」在不同的面積上施力,產生不同「作用壓力」的原理,以壓縮空氣為壓力能量的來源,將壓縮空氣的壓力轉換成更大的流體壓力,壓迫流體動,進而達到輸高黏度及超高黏度流體的目的。
  3. Thirdly, it simulated the pumping circuit & dividing circuit with the widely used software matlab / simulink. the displacement of the rod piston and the impact of hydraulic are analyzed in the different input flow ( frequency of pump ) and different reversing time. it found out the cause of hydraulic impact ( one - to - one incorrespondence between the response time of dividing circuit and the operation time of rod piston ), and gave some methods to weaken hydraulic impact. in the final part of the paper, the reliability of the theory analysis is further verified by the experiment of hydraulic system

    首先在流變學原理的基礎上,深入分析混凝土在輸管道內的流動狀態,得出混凝土的負載特性方程;然後根據功率鍵合圖的建模方法,建立迴路和分配迴路的數學模型,並運用模擬軟體matlab simulink對和分配迴路模型進行了模擬,分析了在不同的輸入流量(頻率)和換向時間下,活塞桿的位和系統的液壓沖擊情況,找到了引起液壓沖擊的根本原因(即分配迴路的響應時間(固定值)與活塞桿的運動時間(變化值)不相匹配) ,並提出了相應的改進方法。
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