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Site Response and Earthquake Design Spectra for Central Khartoum, Sudan

机译:苏丹中央喀土穆的场地响应和地震设计光谱

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Khartoum, the capital of Sudan, is located at the confluence of White and Blue Niles. The city is heavily populated. Central Khartoum with its high-rise buildings is the center of governmental and business activities and is located on a strip adjacent to the Blue Nile. Geological and geotechnical data indicate that the subsoil conditions at Central Khartoum are characterized by alluvial deposits underlain by Nubian Sandstone at a depth of 25 m. The alluvial deposits, locally known as Gezira formations, consist of clays grading into silt and sand with depth. Macro seismic zonation of Sudan and its vicinities, developed by the authors, gave the ground acceleration at the bedrock surface. The effect of alluvial deposits in Central Khartoum on propagation of seismic motion parameters to the ground surface is investigated in this study. Correlations are proposed for pertinent cyclic soil properties such as shear modulus, damping, and shear wave velocity. The Equivalent-Linear Earthquake Response Analyses (EERA) Model was used to study the effect of local soil conditions on ground-motion parameters. In the absence of strong-motion records in Khartoum, available worldwide strong-motion records are used. Plots showing the time histories of ground motion parameters at the ground surface are obtained. The results indicate amplification of ground motion of up to 4.93. The predicted fundamental period of soils is about 0.5 s which is typical for these types of soils. The maximum spectral acceleration varied from 0.76 to 0.95 g. For design purposes, a response spectrum curve is proposed.
机译:苏丹首都喀土穆位于白色和蓝色尼尔斯交汇处。这个城市人口稠密。喀土穆中部及其高层建筑是政府和商业活动的中心,地处青尼罗河附近。地质和岩土工程数据表明,喀土穆中部的地下土壤条件为努比亚砂岩在25 m深度下的冲积沉积物。冲积沉积物,在当地被称为Gezira地层,由高深度的粉砂和砂土组成。作者开发的苏丹及其周边地区的宏观地震带给了基岩表面地面加速作用。本研究研究了喀土穆中部冲积层对地震运动参数向地面传播的影响。提出了相关循环土壤特性的相关性,例如剪切模量,阻尼和剪切波速度。等效线性地震响应分析(EERA)模型用于研究当地土壤条件对地震动参数的影响。在喀土穆没有强运动记录的情况下,将使用全球可用的强运动记录。获得了示出地面上地面运动参数的时间历史的图。结果表明,地面运动的放大率高达4.93。预计的土壤基本周期约为​​0.5 s,这对于这些类型的土壤而言通常很典型。最大光谱加速度从0.76到0.95 g不等。为了设计目的,提出了响应谱曲线。

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