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首頁» 過刊瀏覽» 2020» Vol.5» Issue(4) 449-457???? DOI : 10.3969/j.issn.2096-1693.2020.04.039
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川東北須家河組致密砂巖斷縫系統(tǒng) II:斷層破碎帶的結(jié)構(gòu)特征
廖宗湖,凡睿 ,,李薇,,陳偉倫 ,劉輝,,鄒華耀,,郝芳
1 中國石油大學(xué)(北京)地球科學(xué)學(xué)院,北京 102249 2 中國石化勘探分公司,,成都 610041 3 中國石油大學(xué)(華東)地球科學(xué)與技術(shù)學(xué)院,,青島 266580
Fault-fracture systems of the Xujiahe tight sandstone in the Northeast Sichuan Basin, Part II: Structure characteristics of fault damage zones
LIAO Zonghu , FAN Rui, LI Wei, CHEN Weilun, LIU Hui , ZOU Huayao , HAO Fang
1 College of Geoscience, China University of Petroleum-Beijing, Beijing 102249, China 2 Exploration Branch of Sinopec, Chengdu 610041, China 3 School of Geosciences, China University of Petroleum-Huadong, Tsingdao 266580, China

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摘要? 斷層破碎帶結(jié)構(gòu)是逐漸而非某次劇烈變化形成的,這也直接導(dǎo)致了破碎帶結(jié)構(gòu)幾何空間特征的復(fù)雜性,。 通常斷層破碎帶主要由斷層核和破碎帶這兩個部分組成,,但大規(guī)?;蛘邩?gòu)造變形強烈的斷層中,斷層破碎帶可 能會由單一斷層核演化為具有多個核部的復(fù)雜結(jié)構(gòu),。如何獲得這樣的結(jié)構(gòu)特征,,對研究斷層破碎帶控制下的油 氣運移規(guī)律有重要意義。 基于三維地震方差屬性,,本文提出對川東北馬路背地區(qū)須家河組二段致密砂巖的斷層破碎帶構(gòu)造形態(tài)進行 刻畫,,并對斷層破碎帶的寬度進行量化分析。結(jié)果顯示如下:(1)地震方差屬性結(jié)果展示了地下存在單核斷層破 碎帶和多核復(fù)合斷層破碎帶,。本文利用累計方差值的斜率變化點,,結(jié)合川東北致密砂巖具體情況,選取方差值 0.2 作為邊界值,,確定該斷層破碎帶寬度在 700~1200 m之間,。(2)數(shù)值模擬顯示,斷層破碎帶的形變程度呈指數(shù) 衰減,,即隨著離核距離的增加,,變形強度減少,,這些特征和地表認識一致,。(3)通過破碎帶寬度量化分析,認為 研究區(qū)目的層斷裂帶的寬度表現(xiàn)出極強的不均質(zhì)性,。致密砂巖不僅各斷層破碎帶之間寬度差異大,,斷層破碎帶 寬度在深度上也有明顯變化,其結(jié)構(gòu)顯示出明顯的“層控效應(yīng)”,。 雖然確認斷層破碎帶寬度仍然依賴于經(jīng)驗取值,,但該研究為致密砂巖斷層破碎帶內(nèi)部結(jié)構(gòu)解析提供了新的 方法和工具,為進一步建立川東北致密砂巖斷縫成藏系統(tǒng)提供基礎(chǔ),,其斷層破碎帶構(gòu)造特征對分析斷縫成藏具 有重要意義,。
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關(guān)鍵詞 : 四川盆地,;致密砂巖;斷縫系統(tǒng),;斷層破碎帶,;地震屬性
Abstract

The complexity of the fault zone structure is a direct consequence of the superposition of tectonic movements rather than of a single dramatic deformation. In general, the fault damage zone is mainly composed of two parts, the fault core and the damage zones. However, in a large-scale fault or faults with severe tectonic deformation, the fault may evolve from a single fault core into a composite fault structure with multiple fault cores. It is challenging to obtain the structural features of such fault damage zones to understand the subsurface oil and gas migration.

Based on the three-dimensional seismic variance properties, we provide a new interpretation approach and quantify the widths of fault damage zones of the second member of the Xujiahe tight sandstone in the Malubei region of northeastern Sichuan. The results include: (1) the seismic attribute of variance presents faults with a single fault core and composite fault structures with multiple fault cores. According to the turning point of accumulated values of seismic variance statistically, 0.2 is selected as a critical value of variance to define the width of damage zones. The width range is 700~1200 m. (2) numerical simulation shows that the deformation of the fault zone decays exponentially with increasing distance away from the fault core, which is consistent with the understanding of the faults in the outcrops. (3) The quantitative analysis of the width of the fault damage zones shows strong inhomogeneity of the fault zones as the width varies between the fault damage zones. There is also a significant variation in the depth of the same fault, which indicates an obvious "lithologically-controlled effect". This study is limited by selecting empirical values of seismic variance in determination of fault widths.  

The result validates this new approach and tools for the structural analysis of fault zones in tight sandstones. It provides a basis for further establishing a fault-fracture system in the Northeast Sichuan basin, and the structural features of the fault zones are of great significance for the analysis of petroleum accumulation and distribution in the tight sandstones.

Key words: Sichuan Basin; tight sandstone; fault-fracture system; fault damage zone; seismic attributes
收稿日期: 2020-12-29 ????
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基金資助:中國科學(xué)院A 類戰(zhàn)略性先導(dǎo)科技專項“智能導(dǎo)鉆”(XDA14010306) 資助
通訊作者: [email protected]
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LIAO Zonghu, FAN Rui, LI Wei, CHEN Weilun, LIU Hui, ZOU Huayao, HAO Fang. Fault-fracture systems of the Xujiahe tight sandstone in the Northeast Sichuan Basin, Part II: Structure characteristics of fault damage zones. Petroleum Science Bulletin, 2020, 04: 449-457.
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