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国家自然科学基金(41272196)

作品数:2 被引量:17H指数:2
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U—Th/He热年代学原理、测试及应用被引量:15
2016年
U—Th/He年代学方法已经被广泛地应用于地质学研究。特别是由于磷灰石中氦的低封闭温度,该方法对于晚新生代构造、河流和冰川等地表过程非常敏感,具有其他同位素年代学方法无法比拟的优越性。本文回顾了U-Th/He法的发展历史,介绍了U—Th/He法的基本原理、测试方法、α-校正以及U—Th/He法面临的问题,总结了U—Th/He法在新生代构造变形、河流地貌演化、气候变迁和源区示踪4个方面的应用,最后探讨了U-Th/He法未来的研究方向。
郑德文武颖庞建章李又娟王一舟马严俞晶星王英
关键词:热年代学
Geomorphometric Features of the Alluvial Fans around the Chaka-Qinghai Lake in the Northeastern Tibetan Plateau被引量:2
2014年
This article aims to study the geomorpometric features of alluvial fans since they act as a small-scale geomorphic unit response to tectonics and climate changes around the Chaka-Qinghai Lake area in the northeastern Tibetan Plateau. We quantitatively extracted geomorphic parameters, such as the surface area and slope of alluvial fans adjacent to the Qinghai Nan Shan and Ela Shan. Alluvial fans in the Chaka Lake partition area, south of the Qinghai Nan Shan, are featured by a small area and short length, but the largest slope. Geomorphic parameters of the alluvial fans in Ela Shan area are in- termediate in size, and the alluvial fans in the Qinghai Lake partition area north of Qinghai Nan Shan have the gentlest slope. Together with the regional faulting activity analysis, we suggest that the alluvial fans with the high slopes in the south of Qinghai Nan Shan are mainly controlled by the reverse faulting along the Qinghai Nan Shan faults, and the strike-slip movement of the Eia Shan fault zone plays a weak role. In contrast, due to the lack of active faults, the alluvial fans near the Qinghai Lake area north of the Qinghai Nan Shan only respond to regional erosion, transportation, and deposition proc- esses, thereby forming relatively gentle geomorphic units.
Huiping ZhangYuanyuan Lü
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