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A knowledge-based expert system for earthquake resistant design of reinforced concrete buildings

机译:基于知识的钢筋混凝土建筑抗震设计专家系统

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摘要

Earthquake engineering includes a wide range of disciplines; these include the analysis and evaluation of earthquake risk and the analysis and design of different types of engineering structures. The most frequently encountered of these many specialists is the analysis and design of building for earthquake excitations. In this case, the design engineer has to deal with concepts and requirements, which are not normally encountered when designing for gravity or wind loads. For example, strength and ductility that are key consideration in earthquake resistant design. Additionally, uncertainties are associated with the determination of the earthquake forces, the stiffness and strength of the different structural elements; the selection of the mathematical models which represent the structure behaviour; and the form and intensity of the design earthquakes. Thus, earthquake resistant design of buildings requires extensive knowledge of the conceptual design of structures, mathematical models and analysis assumptions used in structural analysis, and good element detailing. Computer-based earthquake resistant design assistants are needed to provide practicing engineers with decision support tools and to guide them through earthquake resistant design process. This paper is concerned with the description of a knowledge-based expert system for the earthquake resistant design of reinforced concrete buildings. The system is considered as an interactive analysis/design tool in which the structural engineer is guided from the preliminary earthquake design to the final detailed design including non-linear dynamic analysis. The earthquake design methodology included in this system, which is based on the ductile design approach concept, is briefly described.
机译:地震工程包括许多学科。其中包括地震风险的分析和评估以及不同类型的工程结构的分析和设计。这些专家中最常遇到的是地震激发建筑物的分析和设计。在这种情况下,设计工程师必须处理在重力或风荷载设计中通常不会遇到的概念和要求。例如,强度和延展性是抗震设计中的关键考虑因素。另外,不确定性与地震力,不同结构元件的刚度和强度的确定有关。选择代表结构行为的数学模型;以及设计地震的形式和强度。因此,建筑物的抗震设计需要广泛的结构概念设计知识,用于结构分析的数学模型和分析假设,以及良好的元素详图。需要基于计算机的抗震设计助手来为实践的工程师提供决策支持工具,并指导他们完成抗震设计过程。本文关注于基于知识的钢筋混凝土建筑抗震设计专家系统的描述。该系统被认为是一种交互式分析/设计工具,在该工具中,结构工程师从地震的初步设计到最终的详细设计(包括非线性动力分析)都得到了指导。简要介绍了基于延性设计方法概念的系统中的地震设计方法。

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