首页> 外文期刊>Geologie en Mijnbouw >A striated, far travelled clast of rhyolitic tuff from Thames river deposits at Ardleigh, Essex, England: evidence for early Middle Pleistocene glaciation in the Thames catchment
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A striated, far travelled clast of rhyolitic tuff from Thames river deposits at Ardleigh, Essex, England: evidence for early Middle Pleistocene glaciation in the Thames catchment

机译:来自英格兰埃塞克斯郡阿德利泰晤士河河床的横纹状凝灰岩状岩屑,分布较远:在泰晤士河流域早期中更新世冰川形成的证据

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This paper reports the discovery of an in-situ striated, far-travelled, oversized clast in the Ardleigh Gravels of the Kesgrave Sands and Gravels of the River Thames at Ardleigh, east of Colchester in Essex, eastern England. The morphology, petrography and geochemistry of the clast, and the sedimentology of the host deposit are described. The striations are interpreted, on the basis of their sub-parallelism and the shape and sub-roundedness of the clast, as glacial and the clast is provenanced to Ordovician rocks of the Llyn and Snowdonia regions of North Wales. On the basis of clast frequency within the Colchester Formation gravels of the Kesgrave Sands and Gravels it is inferred that glaciers reached the Cotswold region of the Thames catchment. Floe-ice transport during spring flood is invoked for movement from the glaciated region to eastern England. The paper discusses the possible age of the glaciation and recognises that it is difficult to be more precise than a cold stage in the early Middle Pleistocene (MIS 18, 16 or 14). Attention is drawn to the possibility of glaciation associated with a diamicton in the region of the Cotswold Hills known as the Bruern Till, but stresses the need for new work on this deposit.
机译:本文报道了在英格兰东部埃塞克斯郡科尔切斯特东部的阿德利的Kesgrave沙的阿德利砾石和泰晤士河的砾石中发现了一条横纹,远行,超大碎屑的发现。描述了碎屑的形态,岩石学和地球化学,以及宿主沉积的沉积学。条纹是根据其亚平行度以及板块的形状和亚圆度来解释的,因为冰川和板块起源于北威尔士Llyn和Snowdonia地区的奥陶纪岩石。根据凯斯格雷夫沙和砾石的科尔切斯特组砾石中的碎屑频率,可以推断出冰川已经到达泰晤士河流域的科茨沃尔德地区。春季洪水期间的浮冰运输被要求从冰川地区移动到英格兰东部。该论文讨论了冰川的可能年龄,并认识到,要比中更新世早期(MIS 18、16或14)的寒冷阶段更精确。人们提请注意科茨沃尔德丘陵地区被称为布鲁恩蒂尔(Bruern Till)地区与敌敌畏相关的冰川作用的可能性,但强调需要对该矿床进行新的工作。

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