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引用次数: 0
摘要
这项研究是在波兰中北部进行的,该地区曾被萨利亚冰期(海洋同位素阶段[MIS] 6)和魏希伦冰期(MIS 2)的上冰期的冰原所占据。在对冰川地貌的方位进行数字高程模型(DEM)分析的支持下,应用磁感应强度各向异性(AMS)方法重建了这两次更新世冰川的冰盖范围和冰运动方向。研究采用了一种创新方法,从冰川高原地区采集 AMS till 样本。研究发现,在萨利亚冰川的冰盖总体衰退过程中,发生了以前未曾描述过的冰川横断,其特点是冰盖运动方向不同。在对末端冰碛区进行详细地貌研究的基础上(以前曾有过零星描述),明确了魏希塞尔冰期冰原的最大范围。魏希塞尔冰川期冰原从波兰中北部地区的退缩分为四个退缩或横向退缩-退缩阶段,冰原运动的方向各不相同。研究结果表明,AMS 方法在冰川地区古环境研究中具有巨大潜力。
The Pleistocene ice-sheet dynamics in north-central Poland based on magnetic fabrics of tills and landform analysis
This research was carried out in north-central Poland, which was occupied by the ice sheet of the Saalian (Marine Isotope Stage [MIS] 6) and Upper Stadial of the Weichselian (MIS 2) glaciation. The application of the anisotropy of magnetic susceptibility (AMS) method supported by a digital elevation model (DEM) analysis of the orientation of glacial landforms allowed for the reconstruction of ice-sheet extent and ice movement directions of these two Pleistocene glaciations. The research used an innovative method of collecting AMS till samples from the glacial plateau areas. Based on the research, it was found that during the general recession of the ice sheet of the Saalian glaciation, a previously undescribed glacial transgression occurred, characterized by a different direction of ice-sheet movement. On the basis of detailed geomorphological studies of the area of terminal moraines, previously described in fragments, the maximum extent of the ice sheet during the Weichselian glaciation was clarified. The recession of the ice sheet of the Weichselian glaciation from the area of north-central Poland took place in four regressive or transgressive–regressive stages with variable directions of ice-sheet movement. The results obtained indicate the great potential of the AMS method in paleoenvironmental studies of glaciated areas.
期刊介绍:
Quaternary Research is an international journal devoted to the advancement of the interdisciplinary understanding of the Quaternary Period. We aim to publish articles of broad interest with relevance to more than one discipline, and that constitute a significant new contribution to Quaternary science. The journal’s scope is global, building on its nearly 50-year history in advancing the understanding of earth and human history through interdisciplinary study of the last 2.6 million years.