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Seismic Rehabilitation - Benefits of Component Testing

机译:地震康复 - 组件测试的益处

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FEMA 356 backbone relations tend to provide conservative estimates of the available strengths and deformation capacities of reinforced concrete components, leading to costly seismic rehabilitation solutions for California hospitals. The conservatism is driven by the lack of test data for older, typically poorly detailed, structural components. Although FEMA 356 does provide for building specific component testing, this approach is not common due to cost concerns and/or schedule constraints. However, a test program on lightly-reinforced, poorly-detailed wall segments was undertaken at UCLA in 2004-2005 to support seismic rehabilitation projects on several southern California hospitals. Presented test results are compared with FEMA 356 backbone relations to highlight the advantages associated with building-specific test programs. In general, the test specimens revealed more strength and deformation capacity than assumed by FEMA 356, and more gradual strength deterioration. The test results, when coupled with the FEMA 356 Nonlinear Static Procedure (NSP) and Nonlinear Dynamic Procedure (NDP), enabled the development of more rational and substantially more economical rehabilitation solutions. The test results were used to help develop new backbone relations that were incorporated into ASCE-41-06 Supplement #1.
机译:FEMA 356骨干关系倾向于提供钢筋混凝土组件可用优势和变形能力的保守估计,从而导致加州医院的昂贵地震康复解决方案。保守主义是由较旧的测试数据缺乏,通常细化,结构部件的测试数据。虽然FEMA 356确实提供了构建特定的组件测试,但由于成本问题和/或安排约束,这种方法并不常见。然而,在2004 - 2005年的UCLA在UCLA开展了一项关于轻盈的墙网的测试计划,以支持几个加州南加州医院的地震康复项目。呈现的测试结果与FEMA 356骨干关系进行了比较,以突出与特定于建筑物的测试程序相关的优势。通常,测试样品显示比FEMA 356所带来的更强度和变形容量,更逐渐逐渐强度劣化。测试结果,当与FEMA 356非线性静态程序(NSP)和非线性动态程序(NDP)相结合时,使得能够开发更合理和基本更经济的康复解决方案。测试结果用于帮助开发新的骨干关系,该关系纳入ASCE-41-06补充#1。

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