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The Erbisberg drilling 2011: Implications for the structure and postimpact evolution of the inner ring of the Ries impact crater

机译:erbisberg钻探2011:对抗锯齿撞击口内圈的结构和后损伤演化的影响

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摘要

The 26 km diameter Nordlinger Ries is a complex impact structure with a ring structure that resembles a peak ring. A first research drilling through this "inner crystalline ring" of the Ries was performed at the Erbisberg hill (SW Ries) to better understand the internal structure and lithology of this feature, and possibly reveal impact-induced hydrothermal alteration. The drill core intersected the slope of a 22 m thick postimpact travertine mound, before entering 42 m of blocks and breccias of crystalline rocks excavated from the Variscan basement at >500 m depth. Weakly shocked gneiss blocks that show that shock pressure did not exceed 5 GPa occur above polymict lithic breccias of shock stage Ia (10-20 GPa), with planar fractures and planar deformation features (PDFs) in quartz. Only a narrow zone at 49.20-50.00 m core depth exhibits strong mosaicism in feldspar and {101 over bar 2} PDFs in quartz, which are indicative of shock stage Ib (20-35 GPa). Finally, 2 m of brecciated Keuper sediments at the base of the section point to an inverse layering of strata. While reverse grading of clast sizes in lithic breccias and gneiss blocks is consistent with lateral transport, the absence of diaplectic glass and melt products argues against dynamic overthrusting of material from a collapsing central peak, as seen in the much larger Chicxulub structure. Indeed, weakly shocked gneiss blocks are rather of local provenance (i.e., the transient crater wall), whereas moderately shocked polymict lithic breccias with geochemical composition and Sr-87/Sr-86 signature similar to Ries suevite were derived from a position closer to the impact center. Thus, the inner ring of the Ries is formed by moderately shocked polymict lithic breccias likely injected into the transient crater wall during the excavation stage and weakly shocked gneiss blocks of the collapsing transient crater wall that were emplaced during the modification stage. While the presence of an overturned flap is not evident from the Erbisberg drilling, a survey of all drillings at or near the inner ring point to inverted strata throughout its outer limb. Whether the central ring of the Ries represents remains of a collapsed central peak remains to be shown. Postimpact hydrothermal alteration along the Erbisberg section comprises chloritization, sulfide veinlets, and strong carbonatization. In addition, a narrow zone in the lower parts of the polymict lithic breccia sequence shows a positive Eu anomaly in its carbonate phase. The surface expression of this hydrothermal activity, i.e., the travertine mound, comprises subaerial as well as subaquatic growth phases. Intercalated lake sediments equivalent to the early parts of the evolution of the central crater basin succession confirm a persistent impact-generated hydrothermal activity, although for less time than previously suggested.
机译:26 km直径的Nordlinger ries是一种复杂的冲击结构,具有类似峰环的环形结构。通过这种“内晶环”的首次研究钻井在埃巴斯伯格山(SW中)进行了,以更好地了解该特征的内部结构和岩性,并且可能揭示了冲击引起的水热改变。钻头芯的斜率相交了22米厚的后曲线土墩,在进入42米的块和从散发的晶体岩石中挖掘出来的晶体岩石的裂缝和Breccias。弱震动的长片块,表明冲击压力未超过5GPa,发生在休克阶段IA(10-20GPa)的Polymict Lithic Breccias上,在石英中具有平面裂缝和平面变形特征(PDF)。只有49.20-50.00米的核心深度才唯一一个狭长的区域在英尔斯开石和石英中的{101 over酒吧2} PDF中表现出了震动阶段IB(20-35GPa)。最后,在截面的底座上的2米处于截面的底座,到了地层的逆分层。虽然在岩石Breccias和Gneiss块中的Clast尺寸的反向分级与横向运输一致,但没有折叠玻璃和熔体产品的缺乏符合来自折叠中央峰的动态覆盖材料,如较大的螯合结构中所示。实际上,弱震动的球茎是局部出处(即瞬态火山口壁),而中等震动的聚合物与地球化学组成和SR-87 / SR-86签名类似于RIES绒毛的岩石的岩石Breccias源自靠近的位置冲击中心。因此,通过中等震动的聚合物在挖掘阶段期间通过中等震动的聚合物的内圈形成,该细胞可能在挖掘阶段中喷射到瞬态火山口壁中,并且在修改阶段在修改阶段被施加的折叠瞬态火山口壁的弱震动片段。虽然从Erbisberg钻井的情况下不明显存在翻倒的襟翼,但在内圈点处或附近的所有钻孔的调查到整个外部肢体的倒置。中央环是否表示折叠中央峰的残留仍然被示出。沿Erbisberg部分的后水热改变包括氯化,硫化物静脉和强碳酸化。另外,聚合物岩石Breccia序列的下部的窄区域显示其碳酸酯相中的正欧欧米麦米。该水热活性的表面表达,即石斑鱼土墩,包括基础生长阶段。嵌入湖泊沉积物等同于中央火山口盆地演变的早期部分的继承证实了持续的冲击产生的水热活动,尽管较少时间比以前建议的时间更少。

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  • 来源
    《Meteoritics & planetary science》 |2019年第10期|共35页
  • 作者单位

    Georg August Univ Gottingen Geowissensch Zentrum Goldschmidtstr 3 D-37077 Gottingen Germany;

    Georg August Univ Gottingen Geowissensch Zentrum Goldschmidtstr 3 D-37077 Gottingen Germany;

    Georg August Univ Gottingen Geowissensch Zentrum Goldschmidtstr 3 D-37077 Gottingen Germany;

    Albert Ludwigs Univ Freiburg Inst Geo &

    Umweltnaturwissensch Albertstr 23 B D-79104 Freiburg Germany;

    Albert Ludwigs Univ Freiburg Inst Geo &

    Umweltnaturwissensch Albertstr 23 B D-79104 Freiburg Germany;

    Leibniz Inst Evolut &

    Biodivers Sci Museum Nat Kunde Invalidenstr 43 D-10115 Berlin Germany;

    Leibniz Inst Evolut &

    Biodivers Sci Museum Nat Kunde Invalidenstr 43 D-10115 Berlin Germany;

    Georg August Univ Gottingen Geowissensch Zentrum Goldschmidtstr 3 D-37077 Gottingen Germany;

    Ludwig Maximilians Univ Munchen Dept Geo &

    Umweltwissensch Theresienstr 41 D-80333 Munich Germany;

    Leibniz Inst Evolut &

    Biodivers Sci Museum Nat Kunde Invalidenstr 43 D-10115 Berlin Germany;

    Albert Ludwigs Univ Freiburg Inst Geo &

    Umweltnaturwissensch Albertstr 23 B D-79104 Freiburg Germany;

    Bayer Landesamt Umwelt Geol Dienst Hans Hogn Str 12 D-95030 Hof Germany;

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  • 正文语种 eng
  • 中图分类 天文学;
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