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flow unit造句

"flow unit"是什么意思   

例句與造句

  1. Reservoir dynamic flow unit and remaining oil distribution
    儲(chǔ)層動(dòng)態(tài)流動(dòng)單元及剩余油分布規(guī)律
  2. Increasing capacity of mixed flow unit in shenwo hydropower station
    參窩水電廠混流式機(jī)組的增容改造
  3. Classification of jing an oilfield reservoir flow unit in ordos basin
    鄂爾多斯盆地靖安油田儲(chǔ)層流動(dòng)單元的分類方法
  4. Depositional pattern of distal bar energy unit and flow unit delimitation
    遠(yuǎn)砂壩能量相單元沉積模式及流動(dòng)單元?jiǎng)澐?/li>
  5. On the basis of classifing flow unit , the heterogeneity of reservoir is particularly described in study area
    在流動(dòng)單元?jiǎng)澐只A(chǔ)上,對(duì)研究區(qū)儲(chǔ)層的非均質(zhì)性進(jìn)行了詳細(xì)的描述。
  6. It's difficult to find flow unit in a sentence. 用flow unit造句挺難的
  7. Relationship between base - level cycles and hiberarchy of reservoir flow units of lower shihezi formation in daniudi gas field
    大牛地氣田下石盒子組基準(zhǔn)面旋回與儲(chǔ)層流動(dòng)單元的層次性
  8. So , this slug flow unit model could be used as the basis for further analyzing the flow property of slug flow under rolling condition
    因此,該彈狀流單元物理模型是進(jìn)一步分析搖擺狀態(tài)下彈狀流流動(dòng)特性的基礎(chǔ)。
  9. Based on this slug flow unit model , the correlation for calculating average void fraction of slug flow in rolling tube was presented , and the calculations were agreed well with experimental data
    在此基礎(chǔ)上,給出搖擺狀態(tài)下彈狀流平均空泡份額計(jì)算關(guān)系式,并與實(shí)驗(yàn)值進(jìn)行比較,結(jié)果符合較好。
  10. This system uses a jet - flow unit nozzle to trigger hot water dynamics , converting the heat into pressure differentiation that draws external air into the tower for heat exchange to attain cooling
    ( 2 )以一噴流單元之噴嘴引發(fā)熱水動(dòng)能、轉(zhuǎn)換成壓力差,引外氣進(jìn)入塔內(nèi)作熱交換,達(dá)到冷卻的目的。
  11. The slug flow unit model in rolling vertical tube was analyzed in this paper , by setting up some equations , such as mass conversation equations and the necessary conditions for the existence of slug flow
    摘要通過建立質(zhì)量守恒方程和彈狀流穩(wěn)定存在條件等方程,對(duì)搖擺狀態(tài)下豎直管內(nèi)充分發(fā)展的彈狀流單元物理模型進(jìn)行解析。
  12. Schottly barrier diode can be used as rectifying and continuous - flow unit in high frequency rectifying , switching and holding circuit , yet reducing the power consumption and circuit noise , enhancing the circuit efficiency and operation frequency
    肖特基二極管在高頻整流、開關(guān)電路和保護(hù)電路中作為整流和續(xù)流元件,可以大幅度降低功耗,提高電路效率和使用頻率,減少電路噪聲。
  13. Through reforming in steady flow unit of sludge pit feeding , the work efficiency was lifted , the slime amount fed in floatation system was reduced . the consumption was dropped and the enterprise economic benefit increased under the premise of finishing all technology target
    對(duì)撈坑入料裝置的改進(jìn),提高了撈坑的工作效率,減少了進(jìn)入浮選系統(tǒng)的煤泥數(shù)量,在完成各項(xiàng)技術(shù)指標(biāo)的前提下,降低了各種材料的消耗,增加了企業(yè)的經(jīng)濟(jì)效益。
  14. With the development of oil fields , many old reservoirs in the east of china enter the high water - bearing development period . sustaining a high and stable production rate faces severe challenge . the key to preserve oil output in high water cut period is dependent upon the understanding degree to the properties of residual oil distribution . from 1980 ' s , while the study of the reservoir flow unit was proceeded alongside , it has been more widely utilized to characterize reservoir feature and remnant oil distribution . study of reservoir flow unit plays . both theoretically and practically . an important role in recognizing reservoir heterogeneity . performing a high - definition reservoir delineation and understanding the distribution of the remnant oil in the reservoir
    隨著油田的不斷開發(fā),我國(guó)東部許多老油田已進(jìn)入高含水期開采階段,保持油氣產(chǎn)量的穩(wěn)定面臨嚴(yán)竣的挑戰(zhàn),而高含水油田穩(wěn)產(chǎn)的關(guān)鍵取決于對(duì)剩余油分布的認(rèn)識(shí)程度。八十年代以來,隨著對(duì)儲(chǔ)層流動(dòng)單元研究的不斷深入,它越來越廣泛地被應(yīng)到油藏描述和剩余油研究中來,流動(dòng)單元研究對(duì)于認(rèn)識(shí)儲(chǔ)層的非均質(zhì)性、提高油藏描述精度、搞清剩余油分布具有重要的理論意義和實(shí)際意義。
  15. Combining reservoir engineering methods , the distribution laws of remaining oil in different types , or in different part of flow unit are studied . the author reveals the relationship between flow unit and remaining oil distribution . and summarizes the types of remaining oil distribution in study area , and gives the corresponding measures of tapping potential . good results have been yielded in practice , so this convincingly validates the classification of flow unit
    結(jié)合油藏工程方法,對(duì)剩余油在不同流動(dòng)單元的分布以及同一流動(dòng)單元不同部位的分布規(guī)律進(jìn)行了研究,揭示了流動(dòng)單元與剩余油分布的內(nèi)在聯(lián)系,總結(jié)了研究區(qū)剩余油的分布形式,提出了相應(yīng)挖潛方法,在生產(chǎn)實(shí)踐中取得了顯著的應(yīng)用效果,有力地驗(yàn)證了流動(dòng)單元?jiǎng)澐值恼_性。
  16. Based on the careful strata correlation and division of chang - 6 formation of panguiang in jing ' an oil field , the article discusses the structure characteristics , the sand body shape and distribution and the microfacies feature of chang - 6 oil set , analyses the physical properties and heterogeneities of the reservoir which is classified three types as i , ii and iii type , summarizes the relation between microfacies , sandbody distribution and physical properties , evaluates the reservoir from the flow unit aspect , reveals the affecting feature of oil concentration
    本文在對(duì)靖安油田盤古梁油藏長(zhǎng)6油層組進(jìn)行小層精細(xì)劃分和對(duì)比的基礎(chǔ)上,詳細(xì)研究了盤古梁長(zhǎng)6油層組的構(gòu)造,砂體形態(tài)、展布方向及沉積微相特征,對(duì)儲(chǔ)層的非均質(zhì)性作了定性定量的分析并且對(duì)其進(jìn)行分類,總結(jié)了沉積微相和砂體展布、物性之間的關(guān)系,從流動(dòng)單元的角度對(duì)砂體進(jìn)行了評(píng)價(jià),揭示和確定油氣富集規(guī)律的影響因素。
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