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Determination of minimum depth of prestressed concrete I-Girder bridge for different design truck

机译:不同设计卡车预应力混凝土梁桥最小深度的测定

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The depth of superstructure is the summation of the height of girders and the thickness of the deck floor. In this study, it is aim to determine the maximum span length of girders and minimum depth of the superstructure of prestressed concrete I-girder bridge. For this purpose the superstructure of the bridge with the width of 10m and the thickness of the deck floor of 0.175m, which the girders length was changed by two meter increments between 15m and 35m, was taken into account. Twelve different girders with heights of 60, 75, 90, 100, 110, 120, 130, 140, 150, 160, 170 and 180 cm, which are frequently used in Turkey, were chosen as girder type. The analyses of the superstructure of prestressed concrete I girder bridge was conducted with I-CAD software. In the analyses AASHTO LRFD (2012) conditions were taken into account a great extent. The dead loads of the structural and non-structural elements forming the bridge superstructure, prestressing force, standard truck load, equivalent lane load and pedestrian load were taken into consideration. HL93, design truck of AASHTO and also H30S24 design truck of Turkish Code were selected as vehicular live load. The allowable concrete stress limit, the number of prestressed strands, the number of debonded strands and the deflection parameters obtained from analyses were compared with the limit values found in AASHTO LRFD (2012) to determine the suitability of the girders. At the end of the study maximum span length of girders and equation using for calculation for minimum depth of the superstructure of prestressed concrete I-girder bridge were proposed.
机译:上部结构的深度是梁的高度和甲板地板的厚度的求和。在这项研究中,旨在确定预应力混凝土I梁桥超大梁的最大跨度长度和最小深度。为此目的,宽度为10米的桥梁的上层建筑和0.175米的甲板层的厚度,梁长度在15米和35米之间的增量之间改变了两米的增量。选择12个不同的梁,其高度为60,75,90,100,110,120,130,140,​​150,160,170和180cm,其经常在土耳其中用作梁型。采用I-CAD软件进行预应力混凝土I梁桥超大结构的分析。在分析中,AASHTO LRFD(2012)条件在很大程度上考虑。考虑了形成桥上易结构,预应力,标准卡车载荷,等效车道载荷和行人载荷的结构和非结构元件的死载。 HL93,Aashto的设计卡车和土耳其代码的H30S24设计卡车被选为车辆现场负荷。将允许的混凝土应力极限,预应力股线的数量,剥离股的数量和从分析中获得的偏转参数进行比较,与AASHTO LRFD(2012)中发现的限制值进行比较,以确定梁的适用性。在研究最大跨度的最大跨度长度和等式中使用用于计算预应力混凝土I梁桥的最小深度的计算。

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