低地震区钢筋混凝土结构与普通弯矩框架的设计(案例研究:位于 Singkawang 市的中层购物大楼)

Yongga Zulshaec, Herwani Herwani, Muhammad Yusuf
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引用次数: 0

摘要

本文重点介绍了位于中低度地震区 Singkawang 市的一座八层购物大楼的钢筋混凝土结构设计。该研究综合考虑了相关设计因素,以应对该地区的地震条件。通过结构分析,该建筑因中等地震风险而被归入抗震设计类别 B,从而选择了符合 SNI 1726:2019 标准的普通矩抵抗框架系统。研究强调了设计能够承受各种荷载(包括死荷载、叠加死荷载、活荷载、风荷载和地震荷载)的结构的必要性,尤其是在历史上以低至中度地震活动而闻名的西加里曼丹。最近的地震记录凸显了抗震设计对安全性和耐久性的必要性。结构分析证实了该建筑在地震力作用下的稳定性,其模态参与比符合 SNI 1726:2019 的要求,表明其在地震荷载作用下反应稳健。按照 SNI 2847:2019 进行的详细加固设计提高了结构强度和耐久性,尤其是在地震荷载下。地基设计采用量身定制的空心旋喷桩,以提供足够的承载力和稳定性。这种方法展示了在中低地震区抵御潜在地震事件的能力,突出了将抗震设计原则和延性考虑因素相结合以有效减轻地震危害的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
DESIGN OF REINFORCED CONCRETE STRUCTURE WITH ORDINARY MOMENT FRAME IN LOW SEISMIC REGION (CASE STUDY: MIDRISE SHOPPING BUILDING IN SINGKAWANG CITY)
This paper focuses on the design of a reinforced concrete structure for an eight-story shopping building in Singkawang City, located in a low to moderate seismic area. The study integrates relevant design considerations in response to the region's seismic conditions. Through structural analysis, the building is categorized as seismic design category B due to moderate seismic risk, leading to the selection of an ordinary moment-resisting frame system compliant with SNI 1726:2019. Emphasis is placed on the importance of using such a system to enhance ductility and prevent brittleness during earthquakes.The research emphasizes the need to design structures capable of withstanding various loads, including dead, superimposed dead, live, wind, and earthquake loads, particularly in West Kalimantan, known for its historically low to moderate seismic activity. Recent earthquake records highlight the necessity of earthquake-resistant design for safety and durability. Structural analysis confirms the building's stability against seismic forces, with a modal participation ratio meeting SNI 1726:2019 requirements, indicating robust response under seismic loads.The study also assesses inter-story drift and P-Delta effects to ensure they meet allowable limits, which is crucial for preserving structural integrity and preventing post-earthquake instability. A detailed reinforcement design following SNI 2847:2019 enhances structural strength and durability, especially when under seismic loading. The foundation design uses tailored hollow spun piles to provide sufficient bearing capacity and stability. This approach demonstrates resilience against potential seismic events in low-to-moderate seismic regions, highlighting the importance of integrating seismic design principles and ductility considerations for effective earthquake hazard mitigation.
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