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褶皱的地震波反射响应及其大陆地壳构造地质意义

Seismic Reflection Response of Folds and Implications for Structural Geology of Continental Crust

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【作者】 嵇少丞龙长兴夏斌

【Author】 JI Shaocheng ~ 1,2) , LONG Changxing ~ 3) , XIA Bin ~ 2) 1) Département des Génies Civil, Géologique et des Mines, école Polytechnique de Montréal, Montréal, H3C 3A7, Canada2) Laboratory of Marginal Sea Geology, Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou,510640,China; 3) Institute of Geomechanics, Chinese Academy of Geologiocal Sciences, Beijing,100081,China

【机构】 加拿大蒙特利尔综合工学院民用、地质与采矿工程系中国地质科学院地质力学研究所中国科学院广州地球化学研究所边缘海地质重点实验室 蒙特利尔H3C3A7中国科学院广州地球化学研究所边缘海地质重点实验室510640北京100081

【摘要】 褶皱是挤压造山带中最普遍的地质构造,但是为什么在地震反射剖面上却极少呈现褶皱呢?本文从一个构造地质学者的角度出发,数值模拟了几种常见褶皱构造的地震波反射响应。结果表明,传统的反射地震技术并不能正确成像闭合褶皱、斜歪或倒转褶皱及二级以上的多级复合褶皱。褶皱陡倾翼的反射消失,而褶皱转折端的反射形成一系列断断续续分布的假水平层理,这些假水平层理在下地壳中极易被错误地解释成由地壳拉张形成的水平构造层理或由底侵作用形成的水平基性岩席。笔者认为,老、中、新褶皱造山带的下地壳中大多数不连续水平反射可能是由褶皱造成的。

【Abstract】 In order to understand seismic response of folded structures, reflection modeling has been performed on various types of fold trains including single-order open folds, close folds and asymmetric inclined folds as well as multi-order folds. The synthetic sections show that, unlike large scale single-order open folds, multi-order folds and inclined folds cannot be correctly imaged by conventional reflection techniques. The reflections from fold limbs tend to be muted, leaving the crests and troughs that merge laterally into pseudo-horizontal reflections. These reflections bear no resemblance to folds but mislead, instead, the presence of subhorizontal reflections. The latter is often interpreted as subhorizontal layering or compositional lamination formed by crustal extension or underplating. The modeling results also suggest that the compositional lamination is not necessarily the sole source of subhorizontal reflections. Complex folded structures due to intensive shortening may also produce such subhorizontal reflections, but the latter are generally more discontinuous laterally and less dense than those caused by simple lamination. Interestingly, the reflections observed in cratons and fold belts are generally laterally shorter and less dense (except in ductile shear zones) than those observed in the extensional regions. This indicates that seismic lamination may correspond to laminated lower crust in extensional regions such as the Basin and Range (USA), but most likely to complex folded structures beneath both ancient and modern fold belts.

【基金】 中国国家杰出青年科学基金(B类);科技部973项目(编号2003CB716500);中国科学院杰出海外青年学者基金;加拿大自然科学和工程研究基金联合资助的成果。
  • 【文献出处】 地质学报 ,Acta Geologica Sinica , 编辑部邮箱 ,2006年12期
  • 【分类号】P542;P631.4
  • 【被引频次】1
  • 【下载频次】163
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