通过循环三轴试验研究土体的动力特性(阻尼比和剪切模量),用于 Lng Bac lieu 天然气管道项目的阻力设计

Ngoc Thai Ba, Vinh Bui Trong, Phong Le Thanh
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摘要

百略液化天然气管道项目是百略省 3.200 兆瓦液化天然气发电厂综合项目的一部分。整个管道将设计在海底地下,直接承受动荷载(地震、海浪......)。土壤对动荷载的响应是通过土壤的动特性(如动强度、剪切模量和阻尼比)来测量的。这些土壤参数对于研究地表运动以及土壤沉积物在荷载和周期性土壤结构作用下的局部反应非常重要。因此,研究土的动力特性(动力强度、阻尼比和剪切模量)对本工程的抗震设计非常重要。根据相关文献可知,土的动力特性受土壤类型和土壤结构位置的影响。为确定土壤性质,我们在不同深度随机抽取了 6 个土壤样本。在研究动力强度时,人们通常采用扭转切削、循环平切削和循环三轴试验等直接试验方法来测定土的动力强度(动阻)。其中,循环三轴试验法可以轻松模拟真实世界的条件。将该方法应用于软粘土和粘土相的结果表明,阻尼比为 0.117-0.162D,平均为 0.136D,剪切模数为 1650-2632kPa,平均为 2141kPa。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
INVESTIGATION DYNAMIC PROPERTIES OF SOIL (THE DAMPING RATIO AND SHEAR MODULUS) FOR RESISTANCE DESIGN AT THE LNG BAC LIEU GAS PIPELINE PROJECT BY CYCLIC TRIAXIAL TEST
The LNG Bac Lieu gas pipeline project is part of the 3.200MW LNG power plant complex in Bac Lieu province. The entire pipeline will be designed underground at the sea floor to be directly subjected to dynamic loads (earthquakes, waves ...). Soil response to dynamic loads is measured by the soil's dynamic properties such as dynamic strength, shear modulus and damping ratio. These soil parameters are very significant to study the movement of the ground as well as the local reaction of soil sediments under the effect of loads and cyclic soil structure. Therefore, it is very important to investigate the earth's dynamic properties (dynamic strength, damping ratio and shear modulus) to design seismic resistance for this project. From the relevant literature, it is known that the dynamic properties of the soil are influenced by the soil type and the position of the soil structure. 6 soil samples were examined randomly at different depths to determine soil properties. When studying dynamic strength, people often use direct test methods such as torsion cutting, cyclic flat cutting and cyclic triaxial test to determine the dynamic strength (dynamic resistance) of the soil. In which, the cyclic triaxial test method allows the simulation of real-world conditions to be easily simulated. The results of applying this method to soft clay and clay phases show that the damping ratio is 0.117-0.162D, the average is 0.136D, the shear module is 1650-2632kPa, the average is 2141kPa.
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