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Characterization of joint wind-snow hazard for performance-based design

机译:基于性能设计的联合风雪危害特征

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Load combinations involving wind and snow load (effects) govern in the design of some types of structures located in heavy snow regions, such as long-span bridges or roof systems in cases where snow drifts could become significant. While load standards such as ASCE 7 provide guidance on combining design loads for design for life safety, guidance is not yet available for other performance levels (limit states). This is expected to become more significant as performance based-design procedures continue to evolve and gain acceptance in the design community. This paper presents an approach to statistically characterize the joint wind-snow hazard for use in performance-based design. Wind loads and snow loads are modeled as renewal pulse processes and combined within a numerical simulation. The results are then used to construct the joint wind-snow hazard level contours corresponding to different annual exceed-ance probabilities. The procedure described herein, along with the results for the specific cases considered, provide a useful context for relating design loads associated with specific hazard levels to those established for use in life safety design, such as those found in ASCE 7. This enables a discussion on the relationship between strength-based and hazard-specific design values, and between limit state design and performance-based design load combinations.
机译:涉及风雪荷载(效果)的荷载组合在大雪地区的某些类型结构的设计中占主导地位,例如大跨度桥梁或屋顶系统,以防积雪可能变得很明显。尽管诸如ASCE 7之类的负载标准提供了有关组合设计负载以进行生命安全设计的指南,但该指南尚不适用于其他性能水平(极限状态)。随着基于性能的设计程序不断发展并在设计界获得认可,这有望变得更加重要。本文提出了一种方法,可以对基于性能设计的联合风雪危害进行统计表征。风荷载和雪荷载被模拟为更新脉冲过程,并在数值模拟中组合。然后将结果用于构建与不同的年度超标概率相对应的联合风雪危害等级等高线。本文描述的过程以及所考虑的特定情况的结果,为将与特定危害水平相关的设计负荷与为生命安全设计中使用的负荷(例如在ASCE 7中发现的负荷)相关联提供了有用的上下文。基于强度的设计和特定于危害的设计值之间的关系,以及极限状态设计和基于性能的设计载荷组合之间的关系。

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