评估埃塞俄比亚塔纳湖盆地战争坝址的地基特征:地球物理和岩土工程视角

IF 2.9 Q2 GEOGRAPHY, PHYSICAL Quaternary Science Advances Pub Date : 2024-07-09 DOI:10.1016/j.qsa.2024.100216
Yahya Ali Abdulkadir , Tigabu Baye , Muralitharan Jothimani
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引用次数: 0

摘要

一项综合地球物理和岩土工程研究对埃塞俄比亚西北部 War 大坝的地基条件进行了评估。这项调查包括岩石质量分类、浅层地震折射和磁力方法。大坝所在地由第四纪土壤沉积和流纹岩岩石单元组成,这些单元经历了不同程度的风化和断裂。浅层地震折射法可分辨出三层 p 波速度,分别为深度范围为 2-6 米的每秒小于 1.5 千米、深度范围为 15-20 米的每秒 1.5-2.5 千米和深度范围为 20-40 米的每秒 2.5-3.5 千米。磁性数据用于识别线状构造,从钻孔获得的 RQD 值从极差到极好不等。采用倾斜角方法识别了线状构造。渗透性测试结果表明,作为大坝地基的岩体具有抗低渗透性的特征。测试得出的最大和最小渗透系数分别为 9Lu 和 0.81Lu。根据地震折射、磁力和不连续勘测的总体结果,坝址地表及地表以下存在薄弱区。这些结果是通过对坝址的监测获得的。这些重要结构的走向为西南-东北、东北-西南、西北-东南和西南-东北。该研究利用地震折射和磁力勘测方法评估了拟建坝址的地质适宜性。观察到了明显的地质变化,尤其是在右坝基和谷底,这表明需要进行有针对性的灌浆。研究结果表明,虽然该坝址总体上适合建造大坝,但特定区域需要进一步改善地层,以确保稳定性。
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Assessing foundation characteristics at the war dam site, lake tana basin, Ethiopia: A geophysical and geotechnical perspective

An integrated geophysical and geotechnical study evaluated the foundation conditions at the War dam site in northwest Ethiopia. This investigation included the classification of rock quality, shallow seismic refraction, and magnetic approaches. The dam's location comprises quaternary soil deposits and rhyolite rock units that have undergone varied weathering and fracturing. The shallow seismic refraction method distinguishes three layers of p-wave velocities that are less than 1.5 km per second with a depth range of 2–6 m, 1.5–2.5 km per second at a depth range of 15–20 m, and 2.5–3.5 km per second ranging from 20 to 40 m, respectively. Magnetic data were used to identify lineaments, and the RQD value acquired from boreholes ranged from extremely poor to excellent. Lineaments were recognized using the tilt angle approach. The results of the permeability tests demonstrated that the rock mass that serves as the dam's foundation had characteristics that are resistant to low permeability. The maximum and minimum lugeon values obtained from the testing were 9Lu and 0.81Lu, respectively. There are weak zones at and below the surface of the dam site, according to the overall findings acquired from seismic refraction, magnetic, and discontinuity surveying. These results were obtained from monitoring the dam site. These significant structures are directed towards a SW-NE, NE-SW, NNW-SSE, and SSW-NNE orientation. The study assessed the geological suitability of a proposed dam site using seismic refraction and magnetic survey methods. Significant geological variations were observed, particularly in the right abutment and valley floor, indicating the need for targeted grouting. The findings suggest that while the site is generally suitable for dam construction, specific areas require further ground improvement to ensure stability.

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来源期刊
Quaternary Science Advances
Quaternary Science Advances Earth and Planetary Sciences-Earth-Surface Processes
CiteScore
4.00
自引率
13.30%
发文量
16
审稿时长
61 days
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