Analisis Perhitungan Struktur Laboratorium Teknik Sipil Type II Fakultas Teknik Universitas Muhammadiyah (UMSU) Medan

Randi Gunawan
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Abstract

The lack of supporting infrastructure facilities such as the Laboratory at Samudra University, especially in the Civil Engineering Study Program, Faculty of Engineering, has resulted in Samudra University having to work hard in building infrastructure to keep pace with advances in technology and science. This study aims to plan the dimensions and reinforcement of beams, columns, plates and stairs in the Civil Engineering Laboratory building. The laboratory building to be analyzed has a total of 3 floors with floor dimensions of 43 m x 27.49 m. Modeling and analysis of the structure of this building is assisted by the SAP2000 program using the Special Moment Bearing Frame System (SPRMK) and is designed according to SNI 03-1726-2012, SNI 03-2847-2013, and PPPURG 1987. The structure is planned to use concrete quality fc' 30 MPa and steel grade fy 400 MPa. The results of the analysis obtained that the floor slab thickness was 13 cm using D10-200 mm reinforcement for main reinforcement and D10-300 mm for split reinforcement. The thickness of the roof slab is 12 cm using D10-200 mm reinforcement for main reinforcement and D10-300 mm for split reinforcement. The dimensions of the B1 beam are 50 cm x 70 cm using 12D25 for the support area with D10-80 mm braces and 8D25 reinforcement for the field area with D10-120 mm braces. Begel B2 30 cm x 50 cm using 4D25 reinforcement for the support area and field with braces for D10-200 mm field and braces for D10-100 mm support. The dimensions of the K1 column are 60 cm x 80 cm using 10D25 reinforcement with D10-300 mm begel. The dimensions of the K2 column are 60 cm x 60 cm using 8D25 reinforcement with D10 -200 mm begel. The thickness of the ladder plate and landing was obtained 13 cm using D10-200 mm reinforcement.
分析南苏丹工程学院土木工程II型技术实验室结构
由于缺乏配套的基础设施,如Samudra大学的实验室,特别是工程学院的土木工程研究项目,导致Samudra大学不得不努力建设基础设施,以跟上技术和科学的进步。本研究旨在规划土木工程实验楼的梁、柱、板和楼梯的尺寸和配筋。待分析的实验楼共有3层,楼层尺寸为43米x 27.49米。该建筑的结构建模和分析由SAP2000程序辅助,使用特殊弯矩支承框架系统(SPRMK),并根据SNI 03-1726-2012, SNI 03-2847-2013和PPPURG 1987进行设计。结构设计选用混凝土质量为30mpa,钢材等级为400mpa。分析结果表明,楼板厚度为13 cm,主配筋为D10-200 mm,配筋为D10-300 mm。屋面板厚度12cm,主筋采用d10 - 200mm配筋,分筋采用d10 - 300mm配筋。B1梁的尺寸为50cm × 70cm,使用12D25作为支撑区域,使用d10 - 80mm支撑,使用8D25加固现场区域,使用d10 - 120mm支撑。Begel B2 30cm x 50cm,使用4D25加固支撑区域和场地,支撑区域为d10 - 200mm,支撑区域为d10 - 100mm。K1柱的尺寸为60厘米× 80厘米,采用10D25加固,配D10-300毫米凝胶。K2柱的尺寸为60cm × 60cm,采用8D25加固,配D10 - 200mm凝胶。采用D10-200 mm加固,梯板及梯台厚度为13 cm。
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