使用 Midas Civil 2019 软件分析 Warren 型钢结构桥梁的承载能力

Muhammad Andi Arif, Moh. Azhar, Sempurna Bangun
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This study aims to determine the values of the ultimate moment, shear, and axial forces that occur with the object viewed from the longitudinal and transverse girders whether they exceed the nominal profile value or not, and the deflections that occur on the behavior of the structure on the bridge based on SNI 1725:2016 loading with the aisstance of the MIDAS Civil 2019 software. The results of the calculation and capital analysis on the MIDAS Civil 2019 software, the values of the internal forces on the object under review do not exceed the nominal strength value of the profile. First, the girder extends against ultimate moment of ϕMn ≥ Mu = 3.762,080 kNm ≥ 528,869 kNm, against shear force ϕVn ≥ Vu = 1.095,444 kN ≥ 909,282 kN, against axial compressive force ϕPn ≥ Pu = 8.532,876 k N ≥ 3.115,265 kN, to the axial tensile force ϕPn ≥ Pu 7.726,842 kN ≥ 2.434,744 kN. 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引用次数: 0

摘要

有两座具有不同功能的通道桥,即横跨 Ciliwung 河,作为从 RSCM Kencana 大楼到 RSCM Kirana 的通道,那里有专门供汽车/摩托车骑手使用的通道桥和供行人使用的专用桥。然而,密集的驾车者和行人会阻碍交通。因此,修建了配套基础设施,即从肯加纳 RSCM 大楼到基拉纳 RSCM 大楼的车辆桥和行人连接桥。建造的桥梁类型为混凝土板钢架桥。本研究旨在根据 SNI 1725:2016 荷载,借助 MIDAS Civil 2019 软件,确定从纵梁和横梁观察物体时发生的极限力矩、剪力和轴向力的值,无论其是否超出额定轮廓值,以及桥梁结构行为发生的挠度。根据 MIDAS Civil 2019 软件的计算和基本分析结果,被审查对象的内力值未超过轮廓的额定强度值。首先,大梁在极限弯矩ϕMn ≥ Mu = 3.762 080 kNm ≥ 528 869 kNm、剪力ϕVn ≥ Vu = 1.095 444 kN ≥ 909 282 kN,对轴向压缩力 ϕPn ≥ Pu = 8.532 876 k N ≥ 3.115 265 kN,对轴向拉力 ϕPn ≥ Pu 7.726 842 kN ≥ 2.434 744 kN。其次,横梁的极限力矩为 ϕMn ≥ Mu = 1.242,046 kNm ≥ 53,723 kNm,对抗剪力 ϕVn ≥ Vu=1.076,400 kN ≥ 81,513 kN,对抗轴向压缩力 ϕPn ≥ Pu = 3.805,349 kN ≥ 255,812 kN。桥梁结构行为极限状态下的挠度值为 48.70 毫米,该值小于 55 毫米的允许挠度,使得桥梁结构在承受极限荷载时是安全的。
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ANALYSIS OF THE CAPACITY OF A WARREN TYPE STEEL FRAME BRIDGE USING MIDAS CIVIL 2019 SOFTWARE
There are two access bridges that have different functions, i.e., to cross the Ciliwung river as an access road from the RSCM Kencana building to RSCM Kirana, where there is access to the bridge that is specifically for car/motorcycle riders and a special bridge for pedestrians. However, the density of motorists and pedestrians can hinder traffic access. Thus, supporting infrastructure was built, namely a vehicle bridge and connecting pedestrians from the Kencana RSCM building to the Kirana RSCM building. The type of built bridge is a concrete slab steel frame bridge. This study aims to determine the values of the ultimate moment, shear, and axial forces that occur with the object viewed from the longitudinal and transverse girders whether they exceed the nominal profile value or not, and the deflections that occur on the behavior of the structure on the bridge based on SNI 1725:2016 loading with the aisstance of the MIDAS Civil 2019 software. The results of the calculation and capital analysis on the MIDAS Civil 2019 software, the values of the internal forces on the object under review do not exceed the nominal strength value of the profile. First, the girder extends against ultimate moment of ϕMn ≥ Mu = 3.762,080 kNm ≥ 528,869 kNm, against shear force ϕVn ≥ Vu = 1.095,444 kN ≥ 909,282 kN, against axial compressive force ϕPn ≥ Pu = 8.532,876 k N ≥ 3.115,265 kN, to the axial tensile force ϕPn ≥ Pu 7.726,842 kN ≥ 2.434,744 kN. Second, the transverse girder with respect to the ultimate moment of ϕMn ≥ Mu = 1.242,046 kNm ≥ 53,723 kNm, against the shear force ϕVn ≥ Vu=1.076,400 kN ≥ 81,513 kN, against the axial compressive force ϕPn ≥ Pu = 3.805,349 kN ≥ 255,812 kN .The deflection value that occurs at the ultimate state of the structural behavior of the bridge is 48.70 mm, this value is smaller than the allowable deflection of 55 mm, making the bridge structure is safe when it receives the ultimate load.
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