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SHAKING TABLE TESTS ON A SPHERICAL TANK MOCK-UP PROVIDED WITH SEISMIC ISOLATION AND FLEXIBLE PIPING CONNECTIONS

机译:握手在带有地震隔离和柔性管道连接的球形罐模拟上测试

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The Project INDEPTH (Development of Innovative Devices for Seismic Protection of PeTrocHemical Facilities), supported by the European Commission, has the objective of developing and applying innovative seismic isolation and/or dissipation systems for critical structures at petrochemical facilities. In the framework of INDEPTH, integrated seismic protection systems have been conceived, developed and tested. They are aimed at protecting liquid-filled structures (product storage, spherical and LNG tanks), with new devices (fiber-reinforced isolators, buckling reinforced braces) specific for each application and new flexible piping couplings, to compensate the displacements resulting from the use of isolation systems. The research program has been focused on the selection of critical structures, the design and manufacturing of the devices, the numerical assessment and the experimental validation through shaking table tests [1-4]. A quantification of technical/economical/safety benefits with respect to the conventional state-of-the-art measures presently adopted and potential application to retrofitting has been performed This paper describes the validation through shaking table tests of the effectiveness of the isolation systems on a spherical mock-up and the related piping system equipped with flexible joints. Different configurations of the mock-up have been tested, such as: fixed base, isolated base with High Damping Rubber Bearings, Fiber Reinforced Rubber Bearings and Lead Rubber Bearings. Furthermore, each configuration has been tested for three different level of filling to verify the sloshing behavior in the sphere and the effectiveness of the isolation systems at filling levels different from the design one (full sphere).
机译:欧洲委员会支持的印度工程(石油化工设施的地震设施的创新设备的开发)具有开发和适用于石化设施的关键结构的创新地震隔离和/或耗散系统的目的。在印度近日的框架中,已经构思,开发和测试了集成的地震保护系统。它们的目的是保护液体填充的结构(产品储存,球形和液化罐),用新的设备(纤维增强隔离器,屈曲增强胶带),针对每个应用和新的柔性管道联轴器,以补偿由使用产生的位移隔离系统。研究计划一直专注于选择关键结构,设备的设计和制造,通过振动台检验[1-4]的数值评估和实验验证。目前采用的传统最先进措施的技术/经济/安全益处的量化已经进行了并潜在地应用于改装的应用,本文通过摇摆表测试对A隔离系统的有效性进行了验证球形模拟和相关管道系统配备柔性接头。模拟的不同配置已经过测试,例如:固定底座,隔离底座,具有高阻尼橡胶轴承,纤维增强橡胶轴承和铅橡胶轴承。此外,已经测试了每个配置,用于三种不同的填充水平以验证球体中的晃动行为以及隔离系统在填充水平与设计一个(全球)不同的填充水平的有效性。

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