log response造句
例句與造句
- Research and application of coal seam log response predicted from seismic attribute
地震屬性預(yù)測(cè)測(cè)井響應(yīng)的研究與應(yīng)用 - Characteristics of well - logging response to water - flooded reservoir in water - driven oil field
注水開(kāi)發(fā)油田水淹油層測(cè)井響應(yīng)特征 - Sedimentary sequence identification and log responses in yanchang formation , erdos basin
鄂爾多斯盆地延長(zhǎng)組沉積層序識(shí)別及測(cè)井響應(yīng)特征 - Integrated log response function can be derived from the change rate of logs over boundary
在地層界面處的曲線變化中提取出測(cè)井曲線的綜合縱向響應(yīng)函數(shù)。 - Based on its well - logging response characteristics , the cap layers can be classified into mud - cap layer , physical - cap layer and calcic - cap layer
根據(jù)蓋層的測(cè)井響應(yīng)特征,可將蓋層分成泥質(zhì)蓋層、物性蓋層和鈣質(zhì)蓋層三類。 - It's difficult to find log response in a sentence. 用log response造句挺難的
- This paper reviews the log responses of various types of bioherms using core and well log data , and proposes the features of logs suitable for these biohermal reservoirs
但湖相生物礁在柴西地區(qū)分布不均,變化很大,難以用傳統(tǒng)的方法進(jìn)行勘探和開(kāi)發(fā)。 - 5 ) integrated logging datas with geology and exploitation datas , through researching logging response of shallow gas layers , interpretation chart and method were established , which are practical and reliable
沈67塊和占龍臺(tái)汕問(wèn)的淺”引主資料為依抓,分析研究了f戈’ 。 - Rational interpretation of well track position in reservoir , changes of resistivity logging response and of porosity logging response are made by using xxx horizontal well as examples
以xxx水平井為例,對(duì)井眼軌跡在儲(chǔ)層中的位置,以及電阻率測(cè)井響應(yīng)和孔隙度測(cè)井響應(yīng)的變化做出了合理的解釋。 - Two methods are used to calculate the organic carbon content : overlay technique for acoustic slowness curves and resistivity curves ; the regression formula of organic carbon content and log responses obtained from experiments
應(yīng)用以下2種方法計(jì)算地層有機(jī)碳含量:聲波時(shí)差與電阻率曲線重疊法;根據(jù)實(shí)驗(yàn)結(jié)果建立的有機(jī)碳含量與地層測(cè)井響應(yīng)的回歸方程。 - Hererin , according to analyses of the drilling cores and corresponding logging curves , several logging responses to the reef reservoir are worked out so as to provide reference information for the exploration and development of oilfield
根據(jù)巖心和測(cè)井?dāng)?shù)據(jù)系統(tǒng)總結(jié)了生物礁各種類型的測(cè)井響應(yīng),提出了適合柴西地區(qū)生物礁儲(chǔ)層的測(cè)井曲線特征,為油田的勘探和開(kāi)發(fā)提供參考。 - By analyzing the difference of horizontal and vertical wells in logging environment , logging response , etc , studying the response characteristics of formation boundary in horizontal well logging , which include spontaneous potential , natural gamma ( gr ) , sonic logging , methods for identifying oil - water layer are discussed
分析水平井與直井在測(cè)井環(huán)境、測(cè)井響應(yīng)等方面的差異,研究水平井測(cè)井中自然電位、自然伽瑪、聲波測(cè)井在層界面的響應(yīng)特征,探討了水平井油水層判別方法。 - Based on the detailed research on the sedimentary rocks of northwest ordos basin in their textures , structures , vertical sequences and logging response , six kinds of sedimentary facies can be recognized in this work , i . e . , alluvial fan , stream , fan delta , braided delta , delta , lake , barrier beach and carbonate platform , respectively , and more detailed classification of sedimentary subfacies and microfacies for each sedimentary facies are also made in the work
本文通過(guò)對(duì)鄂爾多斯盆地西北部沉積巖沉積結(jié)構(gòu)、沉積構(gòu)造、垂向序列及測(cè)井響應(yīng)的深入研究,識(shí)別出沖積扇、河流、扇三角洲、辮狀河三角洲、曲流河三角洲、湖泊、障壁海岸及碳酸鹽臺(tái)地等8種沉積相類型。在此基礎(chǔ)上,對(duì)每一種沉積相又進(jìn)行了詳細(xì)的沉積亞相和微相的劃分。 - Firstly , well logging responses of fractured reservoir have been worked out by using rock core to calibrate well logging data . secondly , with the help of the seismic coherence cube , 3d volume visualization , seismic multi - attribute parameter , the curves of geophysical characteristics restructed , seismic data inversion with well logging restrict , the well curves inversion and so on , much work has been done , such as the full 3d seismic data fine structure interpretation and the studies for predicting the fractured reservoir in buried hills . a technique has been invented to predicting the fractured reservoir of metamorphic rock in buried hills with the integration of the multi - attribute and the multi - parameters
利用巖芯標(biāo)定測(cè)井資料,研究了裂縫性儲(chǔ)層的測(cè)井響應(yīng),進(jìn)而借助于地震相干體技術(shù)、三維可視化、地震多屬性參數(shù)、地球物理特征曲線重構(gòu)、測(cè)井約束地震反演和測(cè)井特征曲線反演等多項(xiàng)技術(shù)開(kāi)展了全三維地震構(gòu)造精細(xì)解釋和潛山裂縫性儲(chǔ)層橫向預(yù)測(cè)研究,形成了多屬性、多參數(shù)綜合預(yù)測(cè)變質(zhì)巖裂縫性儲(chǔ)層的方法。 - 4 . according to lithochemistry properties of volcanics , starting with logging evaluation mechanism , a method of identifying lithology by radioactive logging is set up ; on basis of core analysis data , log response of reservoir petrophysical properties is analyzed , thus providing basis for evaluating reservoir using logging data ; on basis of testing data , combining with log imaging around wells , comprehensive classification criteria of volcanic reservoirs and porosity interpretation model are established . 5
4 ,根據(jù)火山巖巖石化學(xué)特點(diǎn),從測(cè)井評(píng)價(jià)機(jī)理出發(fā),建立了利用放射性測(cè)井資料識(shí)別巖性的方法;以巖心分析資料為基礎(chǔ),分析了儲(chǔ)層物性的測(cè)井響應(yīng)特征,為利用測(cè)井資料評(píng)價(jià)儲(chǔ)層奠定了基礎(chǔ);以測(cè)試資料為依據(jù),綜合井周成像測(cè)井資料,建立了火山巖儲(chǔ)層的綜合劃分標(biāo)準(zhǔn)及孔隙度解釋模型。 - The paper gathered deep layers well logging materiak record well materiak core and cutting material of 27 wells in the daqing district , recognized the different type of igneous rock according to their log response feature , and made a large number of cross plot , then carefully chose several of them which works better igneous rock lithology recognition . made pattern recognition procedure using computer to recognize lithology , synthetical many logging parameter to identify igneous rock lithology . and then on the basis of recognizing lithology , the paper analyzed the lithofacies recognition law in this district
文中采集了大慶地區(qū)27口井的深層測(cè)井資料、錄井資料、巖心和巖屑資料,根據(jù)火成巖的測(cè)井響應(yīng)特征識(shí)別不同類型的火成巖,并做了大量交會(huì)圖,精選了幾種識(shí)別火成巖巖性效果較好的交匯圖版,編制計(jì)算機(jī)識(shí)別巖性的模式識(shí)別程序,綜合多個(gè)測(cè)井參數(shù)識(shí)別火成巖巖性,并在識(shí)別巖性的基礎(chǔ)上,進(jìn)一步分析本地區(qū)巖相的識(shí)別規(guī)律,最后結(jié)合試油資料,分析本地區(qū)火成巖儲(chǔ)集空間的特點(diǎn)及油氣與火成巖巖性和巖相的關(guān)系。
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