先存薄弱带对帕米尔弧形构造带形成的影响:来自构造物理模拟实验的制约
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本文为国家自然科学基金(编号41720104003、41972217)、国家重大科技专项(编号2016ZX05007-02、2017ZX05008-001、2017ZX05003-001)联合资助的成果。


The effect of preexisting weak zone on the formation of the Pamir Salient: insights from physical analogue modeling
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    摘要:

    帕米尔弧形构造带的形成与先存弧形薄弱带密切相关,这些先存薄弱带如何在印度欧亚板块碰撞初期就被活化是地学界关注的科学问题。本文利用构造物理模拟实验,研究先存弧形构造薄弱带如何影响帕米尔弧形构造带的形成。本文依据相似性准则,设计了两组构造物理模拟实验,包括先存弧形薄弱带(对比模型)和先存弧形薄弱带加地壳滑脱层。实验结果表明:①先存弧形构造带上继承性发育从而形成帕米尔弧形构造带是完全可能的;②在先存弧形薄弱带而无滑脱层的情况下,变形逐渐由南向北传递,呈现典型的前展式的变形过程,最终变形到达先存弧形薄弱带的时间较晚;构造样式上主要表现为一系列南倾断裂控制的变形带不断向北增宽;所造成的地形格局总体上呈现向北单调递减的地形楔形态;③在先存弧形薄弱带而有地壳滑脱层的情况下,先存弧形薄弱带在变形初期就立即活化,之后变形带才表现出从推板向北逐渐传递的过程,最终当变形量足够大时,会在弧形薄弱带前缘形成前锋断裂;构造样式上,表现为一系列的冲起构造;所造成的地形格局总体上为山-谷相间的形态;④帕米尔北缘的先存薄弱带如果在新生代印度-欧亚板块碰撞初期就开始活化,必须存在滑脱层(解耦层)。该新生代早期的滑脱层是否存在、位于什么深度和界面仍有待于进一步研究。

    Abstract:

    The formation of the Pamir salient is related to pre-existing arcuate weak zones. However, the mechanism for the reactivation of the weak zones during the early stage of the Indo-Eurasian collision remains unknown. In this study, we apply analogue modeling to address this issue. Based on similarity principle of scales, we have set up two models with pre-existing weak zone in combination of either non-décollement or décollement. Our modeling yields the following outcomes. ① The modeling result validates the conception that a pre-existing arcuate weak zone can produce the Pamir salient. ② Under the condition of a pre-existing arcuate weak zone without décollement, deformation propagates northward, with the strain loaded in the pre-existing weak zone during late deformation stage. Southdipping thrust faults propagate forward, widening the fold-and-thrust belt. The topography exhibits a slope dipping to the north, showing a northward decreasing wedge. ③ Under the condition of a pre-existing arcuate weak zone and décollement, the former was reactivated at a very early deformation stage, with the strain immediately loaded in the weak zone. Subsequently, the deformation progressively propagates northward from the moveable wall. When the shortening amount is large enough, frontal thrust emerges at front of the weak zone. The deformation architecture consists of several popup structures, resulting in a topography characterized by alternatively arranged ranges and valleys. ④ A décollement is necessary for the strain be exerted immediately on the arcuate weak zone at the northern boundary of the Pamir in the initial stage of the Indo-Eurasian collision. The confirmation of the existence, depth and interface of the early Cenozoic décollement requires further studies.

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曹玉萍,陈汉林,林秀斌,程晓敢,杨蓉,吴磊,石许华.2020.先存薄弱带对帕米尔弧形构造带形成的影响:来自构造物理模拟实验的制约[J].地质学报,94(6):1752-1762.
CAO Yuping, CHEN Hanlin, LIN Xiubin, CHENG Xiaogan, YANG Rong, WU Lei, SHI Xuhua.2020. The effect of preexisting weak zone on the formation of the Pamir Salient: insights from physical analogue modeling[J]. Acta Geologica Sinica,94(6):1752-1762.

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  • 收稿日期:2020-01-02
  • 最后修改日期:2020-02-20
  • 录用日期:2020-04-14
  • 在线发布日期: 2020-04-20