The influence of climatic conditions on the permeability and hydraulic properties of the L5–S5 layers in the Loess Plateau, North Qinling Mountains

IF 0.9 4区 地球科学 Q4 GEOSCIENCES, MULTIDISCIPLINARY
Yao Chen, H. Qian, K. Hou
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引用次数: 2

Abstract

ABSTRACT A better understanding of the role of Quaternary-era climate change in the development of regional hydrology in the Loess Plateau and the impact on regional ecosystems is needed. In particular, a thorough examination of the permeability and recharge under different conditions in the fifth loess–palaeosol layer is required. The fifth loess–palaeosol layer is located at the southern edge of the Jinghe River in the Guanzhong Basin, and was examined to better understand these conditions. A constant head permeability test was conducted at 11 points that covered different stratum of loess–palaeosol, and 55 corresponding undisturbed soil samples were analysed for porosity, magnetic susceptibility, and grain size. Results showed that: (1) with an increase in hydraulic gradient, the permeability coefficient of the upper part of the loess and the lower part of the palaeosol showed contrasting characteristics – this phenomenon was closely related to climatic conditions during the sedimentary period, post-sedimentary microbial activity, and to certain properties relating to permeability in the strata under similar monsoon effects; (2) the Loess Plateau, alternately dominated by the East Asian summer and winter monsoons, exhibited different grain-size compositions in the sedimentary layer, which, in turn, made the permeability in the loess noticeably more stable than that in the palaeosol; and (3) different aquifer characteristics and recharge conditions between the loess–palaeosol layers can be primarily explained by the intensity of the pedogenesis, which depended on extreme dry-old glacial climates and relatively humid-warm interglacial climates. These findings show that climate change played an important role in influencing hydrological systems in the loess–palaeosol sequence.
气候条件对北秦岭黄土高原L5-S5层渗透性和水力特性的影响
摘要:需要更好地了解第四纪气候变化在黄土高原区域水文发展中的作用及其对区域生态系统的影响。特别是,需要对第五黄土-古土壤层在不同条件下的渗透性和补给进行彻底的检查。第五黄土-古土壤层位于关中盆地泾河南岸,为更好地了解这些条件,对其进行了研究。在覆盖黄土-古土壤不同地层的11个点进行了恒定水头渗透试验,并对55个相应的原状土样品进行了孔隙率、磁化率和粒度分析。结果表明:(1)随着水力梯度的增加,黄土上部和古土壤下部的渗透系数呈现出明显的对比特征,这与沉积期的气候条件、沉积后的微生物活动、,以及在类似季风效应下与地层渗透性有关的某些特性;(2) 黄土高原以东亚夏季和冬季季风交替为主,沉积层的粒度组成不同,这反过来又使黄土的渗透性明显比古土壤的渗透性更稳定;(3)黄土-古土壤层间不同的含水层特征和补给条件主要可以用成土强度来解释,这取决于极端干燥的古冰川气候和相对湿润温暖的间冰气候。这些发现表明,气候变化对黄土-古土壤序列中的水文系统产生了重要影响。
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来源期刊
CiteScore
2.00
自引率
0.00%
发文量
21
期刊介绍: Earth and Environmental Science Transactions (formerly Transactions of the Royal Society of Edinburgh: Earth Sciences) is a general earth sciences journal publishing a comprehensive selection of substantial peer-reviewed research papers, reviews and short communications of international standard across the broad spectrum of the Earth and its surface environments. The journal prides itself on the quality of its graphics and photographic reproduction. The Editors are keen to encourage interdisciplinary papers and Transactions also publishes occasional special symposia and invited volumes of specific interest. We are currently in the process of digitising the archive of RSE Publications, and the archive of the Transactions, dating back to 1788, will be available from the back issues link on this site.
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