log n. 1.原木,圓木,干材。 2.測程儀,計程儀。 3.航海日志,(飛行員用的)航海日志;旅行日記。 4.〔英國〕裁縫店日工的工作時間表。 5.【機械工程】記錄表。 clear log干材。 heave [throw] the log用測程儀測船速。 sail by the log靠測程儀測船位航行。 a rough log航海日志草稿。 a smooth log謄清的航海日志。 a performance log(機器等的)運轉(zhuǎn)情況記錄(簿)。 a well log鉆井記錄。 as easy as falling [rolling] off a log 〔美國〕極容易。 in the log 未經(jīng)斧削過的。 keep the log rolling 〔美國〕使工作高速度地進行下去。 Roll my log and I'll roll yours 〔諺語〕互相幫忙;互相吹噓。 sleep like a log睡得很死。 split the log 〔美國〕分析,解釋。 vt. (-gg-) 1.(把樹)砍倒。 2.鋸成圓材;拖(木頭)。 3.把…記入航海[飛行]日志;把…輸入電子計算機 (in). 4.航行;飛行;以…的時速飛行[航行]。 5.給(船體、機翼等)的線形圖[輪廓線]放樣。 vi. 采伐樹木。 log in[off]【計算機】開始[停止]使用電腦工作,進入[退出]電腦工作系統(tǒng)。 n. =logarithm. vt. (-gg-) 向…提供補給品。 n. 補給品的發(fā)放,補給品發(fā)放的日子。 LOG, log = logarithum.
Petrophysics software package has been used to quantitative analyzing of the logging parameter of non - sandstone between salt beds , hence to develop logging evaluation method and obtained a satisfied result in practice 此外,還要輔之以“ p包”等多種解釋軟件實現(xiàn)鹽間非砂巖儲層參數(shù)的測井定量解釋,以形成江漢鹽湖盆地鹽間非砂巖儲層的測井評價方法。
7 ) fractures belong to a complex geologic body with non - linear effect on reservoir ( s ) . well log parameters vs fractural development is also non - linear , hence , multi - parameter evaluation is adopted as necessary . the individual parameter evaluation is effectively employed for local part rather than for whole area 裂縫是復(fù)雜地質(zhì)體,對儲層的影響是非線性的,測井參數(shù)和裂縫發(fā)育的關(guān)系也是非線性的,因此必須采取多參數(shù)聯(lián)合評價的方法;單參數(shù)評價局部有效,應(yīng)用于整體效果不佳。
If your server computer is running windows server 2003 , you can improve the security of your application by securing the event log and by setting event - log parameters regarding the size , retention , and so on to prevent an indirect denial of service attack against the event log 如果服務(wù)器計算機運行的是windows server 2003 ,則可通過保證事件日志的安全,以及設(shè)置有關(guān)事件日志的大小、保留時間等參數(shù),來防止對事件日志的間接拒絕服務(wù)攻擊,從而提高應(yīng)用程序的安全性。
The comprehensive geological characteristic has been fully studied in this paper . on the basis of this , closely combining production practice , the favorable gas developing regions have been determined with the methods of sedimentary facies and combination of generation , reservoir and caprock , and logging parameters interpretation maps and regression formulas have been established with logging data , as well as reprocessing , interpretation and identification of gas reservoir have been done with computer . integrating the information and results of geology , logging , testing and geophysics , the gas reservoir distribution regularity of structure of no . 1 sebei has been described and reserves in place of no . 1 ' sebei gas field have been recalculated , which have provided a basis for next step of development in research area 在近十多年,通過提高地震資料處理精度、淡水聚合物泥漿的應(yīng)用、數(shù)字測井技術(shù)的運用、并加強了低電阻層和差物性層的試氣及氣田擴邊鉆探,大大提高了對氣層的識別,大量增加了氣層的層數(shù)和厚度,擴大了氣田的含氣面積,使氣田儲量通過多次復(fù)查核算仍在不斷增加本論文充分研究了青海澀北一號氣田天然氣地質(zhì)綜合特征,并以此為基礎(chǔ)緊密結(jié)合生產(chǎn)實踐,應(yīng)用沉積相與生儲蓋組合等方法確定氣藏有利發(fā)育區(qū)帶,應(yīng)用測井資料建立測井參數(shù)解釋圖版并回歸公式,應(yīng)用計算機重新處理、解釋和識別氣層,綜合地質(zhì)、測井、試井、物探等多方面信息與成果,描述了澀北一號構(gòu)造的氣層分布規(guī)律,重新計算了澀北一號氣田的地質(zhì)儲量,為研究區(qū)下一步開發(fā)提供了依據(jù)。
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口井的深層測井資料、錄井資料、巖心和巖屑資料,根據(jù)火成巖的測井響應(yīng)特征識別不同類型的火成巖,并做了大量交會圖,精選了幾種識別火成巖巖性效果較好的交匯圖版,編制計算機識別巖性的模式識別程序,綜合多個測井參數(shù)識別火成巖巖性,并在識別巖性的基礎(chǔ)上,進一步分析本地區(qū)巖相的識別規(guī)律,最后結(jié)合試油資料,分析本地區(qū)火成巖儲集空間的特點及油氣與火成巖巖性和巖相的關(guān)系。
This essay adopts the neural network and some parameters regression analysis to set up the some logging parameters prediction model of the rock drillability , then gets the continuous drillability classification value of single well formation . and deduces the theoretic relation of the formation pore pressure and the rock drillability creatively 本文采用神經(jīng)網(wǎng)絡(luò)法與多元回歸分析法建立了巖石可鉆性測井多參數(shù)預(yù)測模型及單井地層的連續(xù)可鉆性級值剖面,同時創(chuàng)造性地推導(dǎo)了地層孔隙壓力與巖石可鉆性之間的理論關(guān)系。
4 . the relationship of four properties : lithology , electrical property , physical property and oil bearing property was determined through the reinterpretation of logging data . logging parameter interpretation model and judgment criteria of oil , water and gas layers were formed , thus improved the precision of logging interpretation 4 .通過測井資料的二次解釋評價,確定了新齊14井區(qū)“巖性、電性、物性、含油性”之間的關(guān)系,建立了測井參數(shù)解釋模型及新齊14井區(qū)油氣水層判別標準,提高了測井解釋精度。
" utilization of multi - attribute transformation in predicting well logging parameter " has transcended many traditional methods of reservoir research in many aspects , and possessing many outstanding technology superiority , which are showed below : ( 1 ) it takes new technology thought - " date - driven law " as the guidance , and inherits and synthesizes forefathers successful technology formed in many years . ( 2 ) ' it directly calculates the well logging parameter by way of the multiple attribute transformation , rather than by way of the sound impedance , like the porosity , while the way before is to make further estimates of the sound impedance from the seismic inversion result so that the result suffers the influence of many factors . ( 3 ) the usefulness of the seismic attribute is drawn from the seismic data , rather than the traditional poststack seismic data after nonlinear a transformation “ ;利用多屬性變換預(yù)測測井參數(shù)”在很多方面超出了傳統(tǒng)意義上的儲層研究方法,具有突出的技術(shù)優(yōu)勢,表現(xiàn)在: ( 1 )它以新的技術(shù)思想? ? “數(shù)據(jù)驅(qū)動法”為指導(dǎo),繼承并綜合利用了前人多年來形成的成功技術(shù): ( 2 )它是直接通過多屬性變換預(yù)測測井參數(shù),而不是通過聲波阻抗,如空隙度,以往的做法是從地震反演結(jié)果中的聲波阻抗做進一步的模擬估算,其結(jié)果受到諸多因素的影響; ( 3 )所用到地震屬性是從地震數(shù)據(jù)中提取的,而不是傳統(tǒng)的迭后地震數(shù)據(jù)本身。
After evaluated the cap layers of this well field quantitatively by different kinds of logging parameters and evaluation methods , it is founded that by introducing the analyses viewpoint and technology of reservoir - seal combination into logging interpretation , oil / gas layers and water layers can be distinguished exactly . this approach is very useful in searching of exploitability hydrocarbon - bearing reservoir 利用各種測井參數(shù)和評判方法對研究井區(qū)的蓋層進行了定量評價,發(fā)現(xiàn)在測井解釋中引入儲蓋組合分析觀點與技術(shù),能正確劃分油、氣、水層,有利于尋找有開發(fā)價值的油氣藏。