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首頁(yè)» 過(guò)刊瀏覽» 2020» Vol.5» Issue(1) 17-25???? DOI : 10.3969/j.issn.2096-1693.2020.01.002
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基于水平井資料的三維地質(zhì)建模方法
柳琳
中國(guó)石油長(zhǎng)城鉆探工程有限公司地質(zhì)研究院,盤錦 124010
3D geological modeling based on horizontal well data
LIU Lin
Geology Research Institute, Great Wall Drilling Company, PetroChina, Panjin 124010, China

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摘要? 以蘇里格氣田某水平井密集分布區(qū)為例,,分析水平井資料在三維地質(zhì)建模中的優(yōu)勢(shì)和應(yīng)用誤區(qū)。水平井 資料具有信息集中且量大的特點(diǎn),,對(duì)于提高井間預(yù)測(cè)的準(zhǔn)確性和表征地質(zhì)體的規(guī)律性方面具有優(yōu)勢(shì);但由于水 平井資料具有較強(qiáng)的方向性和選擇性鉆遇砂體的特點(diǎn),,形成了叢聚效應(yīng),,導(dǎo)致在建模過(guò)程中變差函數(shù)分析結(jié)果 與地質(zhì)認(rèn)識(shí)不符。本文在充分利用水平井?dāng)?shù)據(jù)優(yōu)勢(shì)的前提下,,提出了兩種水平井資料在三維地質(zhì)建模中的應(yīng)用 方法:一是變程橢圓計(jì)算法,,該方法是根據(jù)變程橢球空間分布特征,利用直井信息求取垂向變程大小,,利用兩 個(gè)不同方向的水平井組分別求取兩個(gè)不同方向的變程大小,,進(jìn)而通過(guò)計(jì)算求取變差函數(shù),計(jì)算結(jié)果具有高精度 的特點(diǎn),,此方法適用于至少存在兩個(gè)方向的水平井組的區(qū)域,;二是水平段數(shù)據(jù)抽稀法,該方法是有規(guī)律的多次 均勻抽稀水平段數(shù)據(jù),,消除叢聚效應(yīng),,求取多個(gè)變差函數(shù),,通過(guò)統(tǒng)計(jì)求取研究區(qū)的變差函數(shù),,與變程橢圓計(jì)算 法相比,此方法精度略低,,可應(yīng)用于只存在單一方向的水平井組的區(qū)域,。
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關(guān)鍵詞 : 水平井,;變差函數(shù);地質(zhì)建模,;蘇里格氣田
Abstract
Taking the dense distribution area of horizontal wells in the Sulige Gas Field as an example, the superiority and      paradox of horizontal well data in 3D geological modeling are analyzed in this paper. For the characteristics of centralized    information and large quantity of information, the horizontal wells data have advantage in improving the accuracy of inter-well    prediction and characterizing the regularity of geological bodies. However, a clustering effect occurs because of the strong    directional and selective drilling of sand bodies in horizontal well data. As a result, the variogram based on the horizontal well    
data is not consistent with the geological knowledge. In this paper we present two practical approaches of horizontal well data    application in 3D geological modeling. Based on the spatial distribution characteristics of the variable range ellipsoid, the    range ellipse calculation method is presented. In this method, two different ranges of the horizontal variogram are obtained by    horizontal well data in two different directions individually while the vertical range of variogram is obtained by vertical well    data. So we can get the variogram with high precision by calculation. However, the application of this method is limited to    areas with more than two directions of horizontal wells. The other is the horizontal well data rarefying method. To eliminate    the clustering effect, the horizontal well data are rarefied regularly and uniformly multiple times. And then we can get multiple    variograms by rarefying the horizontal well data to calculate the variogram of the study area by statistics. Compared to the range    ellipse calculation method, the horizontal well data rarefying method has a lower precision and can be applied to the area with    single direction of horizontal wells.   


Key words: horizontal wells; variogram; geological modeling; Sulige Gas Field
收稿日期: 2020-03-28 ????
PACS: ? ?
基金資助:中國(guó)石油天然氣集團(tuán)公司工程技術(shù)科技統(tǒng)籌項(xiàng)目“自營(yíng)區(qū)塊增產(chǎn)綜合技術(shù)研究與試驗(yàn)”(2017T-004-001) 資助
通訊作者: [email protected]
引用本文: ??
柳琳, 基于水平井資料的三維地質(zhì)建模方法. 石油科學(xué)通報(bào), 2020, 01: 17-25
鏈接本文: ?
LIU Lin. 3D geological modeling based on horizontal well data. Petroleum Science Bulletin, 2020, 01: 17-25.
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