首页> 外文会议>World conference on earthquake engineering;WCEE >DEVELOPMENT OF THE GEORGE E. BROWN JR. NETWORK FOREARTHQUAKE ENGINEERING SIMULATION (NEES) LARGE HIGHPERFORMANCE OUTDOOR SHAKE TABLE AT THE UNIVERSITY OFCALIFORNIA, SAN DIEGO
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DEVELOPMENT OF THE GEORGE E. BROWN JR. NETWORK FOREARTHQUAKE ENGINEERING SIMULATION (NEES) LARGE HIGHPERFORMANCE OUTDOOR SHAKE TABLE AT THE UNIVERSITY OFCALIFORNIA, SAN DIEGO

机译:乔治·布朗(E.BROWN)JR的开发。加州大学圣地亚哥分校的网络地震工程仿真(NEES)大型高性能室外振动台

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In October 2002, through the George E. Brown, Jr. Network for Earthquake Engineering Simulation(NEES) program, the National Science Foundation (NSF) awarded the University of California, San Diego(UCSD) $5.9 Million to provide the NEES portfolio with a Large High Performance Outdoor Shake Table(LHPOST). The LHPOST will be the first outdoor and largest (12.2 m × 7.6 m) shake table in the UnitedStates. A large soil pit funded by the California Department of Transportation (Caltrans) has beenstrategically located adjacent to the LHPOST for Soil-Foundation-Structure Interaction (SFSI) testing. Thefacilities will be used to conduct large- and full-scale testing to investigate structural and geotechnicalseismic performance issues that cannot readily be extrapolated from testing at smaller scale, or underquasi-static or pseudo-dynamic conditions, including performance under near-field ground motions.Potential research that could be carried out on the LHPOST include (a) the effects of passive and semiactiveenergy dissipating systems on building response, (b) large-scale testing of kinematic soilfoundation-structure interaction, (c) seismic response of nuclear waste dry storage casks, including thesoil-structure interaction and the kinematic interaction between casks, (d) loss estimation of buildings,including the interaction between their components, (e) seismic response of full-scale wood-frameconstruction including school buildings (f) response of building diaphragms, where the presence of adistributed mass constrains the testing to be performed solely under dynamic conditions, (g) assessment ofliquefaction mitigation mechanisms, (g) optimization of shallow foundations to maximize kinematic soilfoundationinteraction, and (h) the study of the complex interaction between interconnected componentsof electrical substations, such as high-voltage transformer-bushing systems. Such experiments will presentunique opportunities to develop, calibrate, and validate predictive computational tools in earthquakeengineering. The following paper summarizes design issues and specifications for the LHPOST.
机译:2002年10月,美国国家自然科学基金会(NSF)通过George E. Brown,Jr.地震工程模拟(NEES)计划网络向加利福尼亚大学圣地亚哥分校(UCSD)拨款590万美元,以向NEES投资组合提供大型高性能户外振动台(LHPOST)。 LHPOST将成为美国首个室外最大的摇床(12.2 m×7.6 m)。由加利福尼亚州交通运输部(Caltrans)资助的大型土壤坑已战略性地位于LHPOST附近,用于土壤-基础-结构相互作用(SFSI)测试。这些设施将用于进行大规模和全面的测试,以研究无法从较小规模的测试,准静态或拟动态条件下推断出的结构和岩土地震性能问题,包括近场地面运动下的性能。可能在LHPOST上进行的潜在研究包括(a)被动和半主动耗能系统对建筑物响应的影响;(b)运动性土壤基础-结构相互作用的大规模测试;(c)核废料干仓的地震响应桶,包括土壤-结构相互作用和桶之间的运动学相互作用,(d)建筑物的损失估算,包括其组成之间的相互作用,(e)包括学校建筑物在内的全尺寸木结构建筑的地震响应(f)建筑物的响应膜片,其中存在分布的质量限制了仅在动态条件下执行的测试;(g)评估液化缓解机制,(g)优化浅层基础以最大化运动学的土壤基础相互作用,以及(h)研究变电站互连组件(例如高压变压器-套管系统)之间复杂的相互作用。这样的实验将为开发,校准和验证地震工程学中的预测计算工具提供独特的机会。以下白皮书总结了LHPOST的设计问题和规格。

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