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首页> 外文期刊>Geomorphology >Tectonic influences on the preservation of marine terraces: Old and new evidence from Santa Catalina Island, California
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Tectonic influences on the preservation of marine terraces: Old and new evidence from Santa Catalina Island, California

机译:构造对海洋阶地保护的影响:来自加利福尼亚圣卡塔琳娜岛的新旧证据

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摘要

The California Channel Islands contain some of the best geologic records of past climate and sea-level changes, recorded in uplifted, fossil-bearing marine terrace deposits. Among the eight California Channel Islands and the nearby Palos Verdes Hills, only Santa Catalina Island does not exhibit prominent emergent marine terraces, though the same terrace-forming processes that acted on the other Channel Islands must also have occurred on Santa Catalina. We re-evaluated previous researchers' field evidence and examined new topographic, bathymetric, and stream-profile data in order to find possible explanations for the lack of obvious marine terrace landforms or deposits on the island today. The most likely explanation is associated with the island's unresolved tectonic history, with evidence for both recent uplift and subsidence being offered by different researchers. Bathymetric and seismic reflection data indicate the presence of submerged terrace-like landforms from a few meters below present sea level to depths far exceeding that of the lowest glacial lowstand, suggesting that the Catalina Island block may have subsided, submerging marine terraces that would have formed in the late Quaternary. Similar submerged marine terrace landforms exist offshore of all of the other California Channel Islands, including some at anomalously great depths, but late Quaternary uplift is well documented on those islands. Therefore, such submarine features must be more thoroughly investigated and adequately explained before they can be accepted as definitive evidence of subsidence. Nevertheless, the striking similarity of the terrace-like features around Santa Catalina Island to those surrounding the other, uplifting, Channel Islands prompted us to investigate other lines of evidence of tectonic activity, such as stream profile data. Recent uplift is suggested by disequilibrium stream profiles on the western side of the island, including nickpoints and profile convexities. Rapid uplift is also indicated by the island's highly dissected, steep topography and abundant landslides. A likely cause of uplift is a restraining bend in the offshore Catalina strike-slip fault. Our analysis suggests that Santa Catalina Island has recently experienced, and may still be experiencing, relatively rapid uplift, causing intense landscape rejuvenation that removed nearly all traces of marine terraces by erosion. A similar research approach, incorporating submarine as well as subaerial geomorphic data, could be applied to many tectonically active coastlines in which a marine terrace record appears to be missing.
机译:加利福尼亚海峡群岛包含过去气候和海平面变化的一些最佳地质记录,记录在隆起的含化石的海相阶地沉积物中。在加利福尼亚的八个海峡群岛和附近的帕洛斯·维德山丘中,只有圣卡塔利娜岛没有显着的新兴海洋阶地,尽管在圣卡塔利娜岛上也必须发生与其他海峡群岛相同的阶地形成过程。我们重新评估了以前的研究人员的现场证据,并检查了新的地形,测深和河流剖面数据,以寻找可能的解释来说明当今岛上缺乏明显的海洋阶地地形或沉积物。最有可能的解释是与该岛尚未解决的构造历史有关,不同研究人员提供了近期隆升和沉陷的证据。水深和地震反射数据表明,从目前的海平面以下几米到深度远远超过最低冰川低位的深度,都存在淹没的梯田状地貌,这表明卡塔利娜岛地块可能已经消沉,将淹没形成的海洋阶地在第四纪末期。在所有其他加利福尼亚海峡群岛的近海也存在类似的淹没海底地貌,包括一些异常大的深度,但这些岛上的第四纪晚期隆升有据可查。因此,必须更彻底地调查并充分解释这些海底特征,然后才能将其接受为沉陷的确定证据。尽管如此,圣卡塔利娜岛周围的阶地状特征与周围的其他特征(海峡群岛隆起)具有惊人的相似性,促使我们研究了构造活动的其他证据,例如河流剖面数据。岛西侧的不平衡流剖面表明了最近的隆起,包括断点和剖面凸起。该岛的高度解剖,陡峭的地形和丰富的滑坡也表明了快速的隆升。抬升的可能原因是海上卡塔利娜走滑断层的约束弯曲。我们的分析表明,圣卡塔利娜岛最近经历了并且可能仍在经历相对快速的隆升,从而引起了强烈的景观复兴,并通过侵蚀消除了几乎所有海洋阶地的痕迹。结合海底和航空地貌数据的类似研究方法可以应用于许多构造活动活跃的海岸线,在这些海岸线上似乎缺少海洋阶地记录。

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