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Suggested changes to the non-conservative low frequency criteria for the seismic design spectrum used in intraplate regions

机译:建议改变了在腔内区域中使用的地震设计谱的非保守低频标准的变化

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The shape and the amplitude of the design spectrum are critical to the safe design of structures. This paper presents suggested changes to the shape constraints for the design spectrum in the 0.5 to 3 Hz range for large intraplate earthquakes. The main recommendation arises because of the impact on a large pulse loading within an intraplate earthquake with a frequency of 1 to 2 Hertz. Newmark and Hall in 1978 established the seismic criteria for the design of nuclear power plants. This criteria still forms an integral part of the legal framework in the United States for the design of nuclear facilities. The earthquake spectrum developed for the nuclear power plant design was based on an extensive analysis of the seismicity of interplate regions and a rigorous mathematical review of the wave and pulse constraints on the limits of the design spectrum. The shape of the 0.5 to 3 Hertz region of this design spectrum was based on a number of mathematical assumptions in the analysis that were known in 1978 to be non-conservative and requiring review with the collection of additional seismic traces. Recent earthquake data from the secret Russian database held in the Lamont Doherty Observatory database, data from the New Madrid Seismic Zone, other large intraplate events and the recent 2004 Sumatra earthquake provides sufficient data to reconsider the wave and pulse constraints used by Newmark and Hall in the original mathematical review of the design spectrum. The recommendations about the spectrum shape change for major intraplate are applicable to other major structures with a low natural frequency.
机译:设计光谱的形状和幅度对于安全的结构设计至关重要。本文提出了大型内部地震的0.5至3 Hz范围内设计光谱的形状约束的建议改变。主要推荐产生,因为对具有1至2赫兹频率的腔内地震内的大脉冲负载的影响。 1978年纽马和霍尔建立了核电厂设计的地震标准。该标准仍然是美国法律框架的一个组成部分,用于核设施的设计。为核电厂设计开发的地震谱是基于对Interlate地区的地震性的广泛分析以及对设计光谱极限的波和脉冲约束的严格数学综述。该设计谱的0.5至3赫兹地区的形状基于分析中的许多数学假设,其在1978年已知的是非保守的,并且需要审查其他地震迹线。最近来自秘密俄罗斯数据库的地震数据在Lamont Doherty天文台数据库中,来自新的马德里地震区的数据,其他大型内部陷阱事件和最近的2004年苏门答腊地震提供了足够的数据来重新考虑Newmark和Hall使用的波和脉冲约束设计谱的原始数学综述。关于主要内部板的频谱形状变化的建议适用于具有低固有频率的主要结构。

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