非常规油气
非常規油氣
비상규유기
Unconventional Oil & Gas
2015年
5期
13-19
,共7页
泥质白云岩%储层特征%储集类型%岩性识别%测井解释孔隙度
泥質白雲巖%儲層特徵%儲集類型%巖性識彆%測井解釋孔隙度
니질백운암%저층특정%저집류형%암성식별%측정해석공극도
argillaceous dolostone%reservoir characters%reservoir type%lithology identification%logging interpretation po-rosity
塘沽油田古近系沙河街组沙三段5油组储油层为泥质白云岩,形成于断隆背景下的微咸—半咸、弱还原较深水湖相碳酸盐岩沉积环境,白云岩为次生交代成因,白云石含量低(65%),泥质含量高(30%),储层电性特征具有高自然伽马、高中子、低密度、中声波时差、低—中电阻率的特点,属中—高孔、低渗储层,储集类型为孔隙、裂缝双重孔隙介质,在岩心孔隙度分析资料较少的地区,有效孔隙度的解释方法成为储层评价及储量参数研究的难点.通过应用薄片、岩心物性分析资料及测井资料,采用了交会图、统计图等技术手段,开展了泥质白云岩岩性识别、储层特征研究、储层泥质含量及裂缝孔隙度、基质孔隙度的解释方法研究,为今后类似储层的评价研究提供了方法和依据.
塘沽油田古近繫沙河街組沙三段5油組儲油層為泥質白雲巖,形成于斷隆揹景下的微鹹—半鹹、弱還原較深水湖相碳痠鹽巖沉積環境,白雲巖為次生交代成因,白雲石含量低(65%),泥質含量高(30%),儲層電性特徵具有高自然伽馬、高中子、低密度、中聲波時差、低—中電阻率的特點,屬中—高孔、低滲儲層,儲集類型為孔隙、裂縫雙重孔隙介質,在巖心孔隙度分析資料較少的地區,有效孔隙度的解釋方法成為儲層評價及儲量參數研究的難點.通過應用薄片、巖心物性分析資料及測井資料,採用瞭交會圖、統計圖等技術手段,開展瞭泥質白雲巖巖性識彆、儲層特徵研究、儲層泥質含量及裂縫孔隙度、基質孔隙度的解釋方法研究,為今後類似儲層的評價研究提供瞭方法和依據.
당고유전고근계사하가조사삼단5유조저유층위니질백운암,형성우단륭배경하적미함—반함、약환원교심수호상탄산염암침적배경,백운암위차생교대성인,백운석함량저(65%),니질함량고(30%),저층전성특정구유고자연가마、고중자、저밀도、중성파시차、저—중전조솔적특점,속중—고공、저삼저층,저집류형위공극、렬봉쌍중공극개질,재암심공극도분석자료교소적지구,유효공극도적해석방법성위저층평개급저량삼수연구적난점.통과응용박편、암심물성분석자료급측정자료,채용료교회도、통계도등기술수단,개전료니질백운암암성식별、저층특정연구、저층니질함량급렬봉공극도、기질공극도적해석방법연구,위금후유사저층적평개연구제공료방법화의거.
The oil reservoir of five oil groups in the third member of Shahejie Formation of Paleocene in Tanggu Oilfield is argillaceous dolomites which developed in brackish, weak reductive and deeper lacustrine facies carbonate deposit environ-ment under the background of faulted uplift. Dolomite is of secondary replacement genesis, with low content of dolomite ( 65%) and high shale content ( 30%) . The electrical features of the reservoir are characteristic of high natural gamma, high neutron, low density, middle acoustic time difference, and low-middle resistivity. It has medium-high porosity and low permeability, and double porosity of pores and fractures. In the area with less data for core porosity analysis, the ap-proach for interpreting effective porosity becomes the difficult for reservoir evaluation and reserves parameters research. By applying thin slice and core property analysis data as well as logging data, we adopted such technical means as crossplot and statistical chart for interpretive method study on lithology identification of argillaceous dolostone, reservoir features, reservoir shale content and fracture porosity, and matrix porosity, providing means and basis for further evaluation of similar reservoirs.