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Engineering Geological and Geotechnical Investigations for Design of Oxygen Plant 被引量:1
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作者 Khaleel Hussain Dou Bin +4 位作者 Javid Hussain Syed Yasir Ali Shah Hadi Hussain Altaf Hussain Sadam Hussain 《International Journal of Geosciences》 2022年第4期303-318,共16页
The most important aspect of every civil engineering project is acquiring reliable information on the ground on which the project will be constructed. This research includes a site investigation, which is seen as a pr... The most important aspect of every civil engineering project is acquiring reliable information on the ground on which the project will be constructed. This research includes a site investigation, which is seen as a primary stage in gathering geological, geotechnical, and other essential engineering data for structures’ safe and cost-effective design. Five boreholes at well-spaced spots were drilled for subsurface investigation at a maximum depth of 15 m to 30 m. The standard penetration tests (SPT) were performed at different depths, soil samples were taken at various intervals, and lithological changes were observed. The friction angle was between 19.6&#186;and 33.03&#186;, whereas the cohesion ranges between 0.25 kg/cm<sup>2</sup> and 0.42 kg/cm<sup>2</sup>, indicating a strong resistance to shearing and a high capacity to sustain the load. Furthermore, the soil samples’ maximum dry density ranges from 1.63 g/cm<sup>3</sup> to 1.80 g/cm<sup>3</sup>. In addition, water table depths were recorded from 6.0 m to 7.0 m. The net bearing capacity for isolated/pad foundation at a depth of 1.5 m to 2.5 m below the ground level has been calculated as 95.0 to 120.0 kPa and 120.0 to 180.0 kPa for raft foundation. The net allowable pressure settlement limits for isolated/pad and raft foundations are 25 mm (1-inch) and 50 mm (2-inches), respectively. The investigation has found no severe geological flaws on the proposed construction site, and therefore it is appropriate for the construction of an Air Separation Unit (ASU) Oxygen Plant. 展开更多
关键词 Geotechnical Properties Subsurface Profile Water Conditions SPT Bearing Capacity FOUNDATION
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Suppression of Multiples by Improved Expanding Multi-Channel Match Minus Method
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作者 Liu Hua-Feng Li Qing-Chun Wang Li-Ming 《石油地球物理勘探》 EI CSCD 北大核心 2009年第A02期52-58,共7页
关键词 相匹配 多通道 预测模型 镇压 乘数 计算速度 深度信息 测试数据
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Physio-Mechanical Properties and Petrographic Analysis of NikanaiGhar Limestone KPK, Pakistan
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作者 Syed Yasir Ali Shah Dou Bin +6 位作者 Obaidullah Javid Hussain Khaleel Hussain Ali Asghar Hadi Hussain Aftab Ur Rahman 《Open Journal of Civil Engineering》 2022年第2期169-188,共20页
Petrographic, physical, and mechanical assessment investigation of NikanaiGhar limestone aggregate exposed in the Lower Dir area of Malakand Division, Pakistan, were conducted to evaluate and investigate its potential... Petrographic, physical, and mechanical assessment investigation of NikanaiGhar limestone aggregate exposed in the Lower Dir area of Malakand Division, Pakistan, were conducted to evaluate and investigate its potential for use as a construction material for engineering projects. Different geotechnical tests and petrographic analyses were performed to evaluate its potential for construction purposes. Geotechnical tests include unconfined compressive strength, ultimate tensile strength test, specific gravity, share strength, porosity, and water absorption. The evaluated physical attributes were compared to standard specifications to determine their suitability as a construction material. Petrographic investigation indicates mainly two types of stones. Stylolitic spar stone and Spar stone are metamorphosed equivalent limestones and are not prone to alkali-silica reactivity. Mutual relationships between physical parameters have been described by simple regression analysis. Significant direct correlation of specific gravity with ultimate tensile strength and uniaxial compressive strength was noted. However, negative trends of Porosity with ultimate tensile strength and uniaxial compressive strength were observed which is in accordance with standard. The analysis revealed that the limestones of NikanaiGhar Formation fall within the standard specification limits and can be used as aggregates for the indigenous construction industry. 展开更多
关键词 Potential Aggregates Geotechnical Study Petrographic Analysis Regression Analysis NikanaiGhar Limestone
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