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Natural base isolation system for earthquake protection

机译:用于地震防护的天然隔震系统

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The performance of a well-designed layer of sand, geo-grid, geo-textiles and composites like layer of sand mixed with shredded tyre (rubber) as low-cost base isolators is studied in shake table tests in the laboratory. The building foundation is modelled by a 200 mm x 200 mm and 40 mm thick, rigid plexi-glass block. The block is placed in the middle of a 1 m x 1 m tank filled with sand. The selected base isolator is placed between the block and the sand foundation. Accelerometers are placed on top of the footing and foundation sand layer. The displacement of the footing is also measured by transducers. The whole set-up is mounted on the shake table and subjected to sinusoidal motion with varying amplitude and frequency. Sand is found to be effective only at very high amplitude (>0.65 g) of motion. Among all the different materials tested, the performance of a composite consisting of sand and 50% shredded rubber tyre placed under the footing is found to be the most promising as a low-cost, effective base isolator.
机译:在实验室的振动台测试中,研究了精心设计的砂层,土工格栅,土工织物以及像碎砂层与碎轮胎(橡胶)混合作为低成本基础隔离剂的复合材料的性能。建筑基础以200毫米x 200毫米和40毫米厚的刚性有机玻璃砖为模型。砌块放置在装有沙子的1 m x 1 m储罐的中间。选定的基础隔离器放置在砌块和砂基础之间。加速度计放置在基础和基础沙层的顶部。基脚的位移也由换能器测量。整个装置安装在振动台上,并经受振幅和频率变化的正弦运动。发现沙子仅在非常高的振幅(> 0.65 g)下才有效。在所有不同的测试材料中,由沙子和置于胎基下方的50%碎橡胶轮胎组成的复合材料的性能被认为是最有前途的低成本,有效的基础隔离剂。

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