利用起重机规划工业建筑结构

Totok Andi Prasetyo, Naufal Yasir
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引用次数: 0

摘要

工业建筑结构规划符合《抗震规划程序》、《建筑设计最小荷载》和《钢结构建筑规范》等标准和法规。垂直荷载和侧向荷载是结构荷载流过程的基础。工业建筑需要承受屋顶荷载、风荷载、地震荷载、起重机荷载和墙体荷载。结构设计必须考虑这些因素,包括选择 X 型支撑等抗侧力系统。在确定建筑荷载(包括地震和风荷载)时,必须根据 SNI 1727-2020 和 SNI 1726:2019 等标准要求考虑风速、暴露类别等各种参数和其他因素。在确定风荷载时,场地等级、风向、地形和地表高程等因素的选择至关重要。本研究方法主要针对工业建筑中由檩条和桁架组成的支撑结构。檩条由热轧或冷轧钢材制成,一般采用 C 型和 Z 型。桁架由冷轧或热轧钢材制成,具有不同的型材,如 C 型、Z 型或空心方形截面。桁架结构的设计过程决定了尺寸、杆件下垂度、内部要求和下垂杆件的承载能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Industrial Building Structure Planning With Cranes
Industrial building structure planning complies with standards and regulations, such as Procedures for Earthquake Resistance Planning, Minimum Loads for Building Design, and Specifications for Structural Steel Buildings. Vertical and lateral loads are fundamental to the structure's load flow process. Industrial buildings handle roof, wind, earthquakes, crane, and wall loads. Structural design must consider these elements, including the choice of lateral force-resisting systems such as X-bracing. In determining building loads, including earthquake and wind loads, various parameters such as wind speed, exposure category, and other factors must be considered by standard requirements such as SNI 1727-2020 and SNI 1726:2019. Selection of site class, wind direction, topographic, and ground surface elevation factors are essential in determining wind loads. This research method focuses on supporting structures consisting of purlins and girts in the context of industrial buildings. Purlins, made from hot or cold rolled steel, generally use C and Z profiles. Girts, made from cold or hot rolled steel, have profile variations such as C, Z, or hollow square sections. The girt structure design process determines dimensions, rod sag, internal requirements, and sag rod capacity.
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