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首页> 外文期刊>International Geology Review >Sedimentary characteristics and provenance of the basal conglomerate of the Late Jurassic-Early Cretaceous Jiaolai Basin, eastern China and their implications for the uplift of the Sulu Orogenic Belt
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Sedimentary characteristics and provenance of the basal conglomerate of the Late Jurassic-Early Cretaceous Jiaolai Basin, eastern China and their implications for the uplift of the Sulu Orogenic Belt

机译:侏罗纪早期白垩纪胶土盆地,东部地区的基础集团沉积特征及出差及其对苏术造山带隆起的影响

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摘要

The basal conglomerates ('Linsishan Conglomerate', LC, herein) are exposed discontinuously along the northern part of the Sulu Orogenic Belt (SOB) and the southern part of the Jiaobei Terrane. Studying these conglomerates can offer key constrains for the formation age of the Jiaolai Basin and improve our understanding of the uplift and erosional histories of the SOB and Jiaobei Terrane, which are still in great controversy. In Huangyadi section, the LC is characterized as debris-flow deposits, channel deposits, and sheet-flow deposits. However, in Shanjiao section, the LC is changed to sheet-flow and sieve deposits, as well as debris-flow and channel deposits. These deposit characteristics indicate an unstable tectonic setting during initial opening stage of the basin. Based on the data of conglomerate component, palaeocurrent, and debris zircons ages, it can be inferred that the sediments in the Laiyang region were sourced from the Jiaobei Terrane and Northern Sulu Orogenic Belt (NSOB), and the sediments in the Zhucheng and Wulian regions were derived from the Jiaobei Terrane and the Southern Sulu Orogenic Belt (SSOB). Besides, the sediments in the Haiyang and Jimo regions were provided by the NSOB and SSOB, respectively. The significant SHRIMP U-Pb ages of a tuff developing in the LC has been obtained, indicating that 149 +/- 2.5 Ma is the oldest age constraint for the Jiaolai Basin. In addition, our result shows that the Latest Jurassic (ca. 149 Ma) may be a critical time; before this time, the Jiaobei Terrane and the SOB experienced a rapid uplift with minimal uplift velocity (similar to 0.9 km/Ma); since then, the Orogen began to collapse and a series of basins formed rapidly in its core, which indicate the tectonic stress regime of the Dabie-Sulu Orogen varied from compressional stress to tensile stress.
机译:基础集团('Linsishan Conglomerate',LC,本文)沿着苏尔造口带(袜子)的北部和吉亚北方地区的南部露出不连续。研究这些企业群可以为焦利地盆地的形成年龄提供关键限制,并改善我们对索布和嘉贝特拉的隆起和侵蚀历史的理解,仍处于巨大争议。在黄岩部分,LC的特征在于碎屑 - 流量沉积物,通道沉积物和片流沉积物。但是,在山茶部分,LC变为流量和筛沉积物,以及碎片流动和渠道沉积物。这些沉积特性表示盆地初始开口阶段的不稳定构造环境。基于集团组分,古古电流和碎片锆菌的数据,可以推断出莱阳地区的沉积物来自嘉北地区和北苏术造山带(Nsob),以及Zhucheng和Wulian地区的沉积物源自吉亚贝特特拉,苏尔造口骨折(SSOB)。此外,海洋和JIMO地区的沉积物分别由NSOB和SSOB提供。已经获得了LC中发育的凝灰岩的显着虾U-PB年龄,表明149 +/- 2.5 mA是胶台盆地最古老的龄限制。此外,我们的结果表明,最新的侏罗纪(CA.149 MA)可能是一个关键的时期;在此之前,杰贝特拉格和索布经历了快速隆起,升高速度最小(类似于0.9公里/ mA);从那时起,orogen开始崩溃,并且在其核心中迅速形成的一系列盆地,这表明Dabie-Sulu orogen的构造应力制度因来自压缩应力而变化到拉伸应力。

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