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A knowledge-based software for the preliminary design of seismically isolated bridges

机译:基于知识的抗震桥梁预设计软件

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摘要

Seismic design of isolated bridges involves conceptual, preliminary and detailed structural design. However, despite the variety of commercial software currently available for the analysis and design of such systems, conceptual and preliminary design can prove to be a non-straightforward procedure because of the sensitivity of bridge response on the initial decisions made by the designer of the location, number and characteristics of the bearings placed, as well as on a series of broader criteria such as serviceability, target performance level and cost-effectiveness of the various design alternatives. Given the lack of detailed design guidelines to ensure, at this preliminary stage, compliance with the above requirements, a “trial and error” procedure is typically followed in the design office to decide on the most appropriate design scheme in the number and location of the bearing systems; the latter typically based on engineering judgment to balance performance with cost. To this end, the particular research effort aims to develop a decision-making system for the optimal preliminary design of seismically isolated bridges, assumed to respond as single degree of freedom (SDOF) systems. The proposed decision-making process is based on the current design provisions of Eurocode 8, but is complemented by additional criteria set according to expert judgment, laboratory testing and recent research findings, while using a combined cost/performance criterion to select from a database of bearings available on the international market. Software is also developed for the implementation of the system. The paper concludes with the application, and essentially the validation of the methodology and software developed through more rigorous MDOF numerical analysis for the case of a real bridge.
机译:隔震桥梁的抗震设计涉及概念,初步和详细的结构设计。但是,尽管目前有各种各样的商业软件可用于此类系统的分析和设计,但由于桥梁响应对位置设计人员最初决定的敏感性,因此概念和初步设计可能被证明是不简单的过程。 ,所放置轴承的数量和特性,以及一系列更广泛的标准,例如各种设计方案的可维修性,目标性能水平和成本效益。鉴于缺乏详细的设计指南来确保在此初步阶段符合上述要求,因此设计办公室通常会按照“试错法”的程序来确定最合适的设计方案,以确保设计方案的数量和位置。轴承系统;后者通常基于工程判断来平衡性能和成本。为此,特殊的研究工作旨在开发一种决策系统,用于地震隔离桥梁的最佳初步设计,并假定其作为单自由度(SDOF)系统响应。拟议的决策过程基于欧洲规范8的当前设计规定,但根据专家的判断,实验室测试和最新研究结果,还设置了附加标准,同时使用成本/绩效组合标准从以下数据库中进行选择:轴承可在国际市场上购买。还开发了用于实施系统的软件。本文以应用为结尾,并通过实际的桥梁验证了通过更严格的MDOF数值分析开发的方法和软件的有效性。

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