手算毕业设计(土木工程专业)

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大学学士学位论文

目 录

1 设计资料

·················································································································· (2)

2 楼板设计

2.1 楼面结构平面布置 ········································································· (3) 2.2 荷载计算 ························································································· (3) 2.3 弯矩计算 ························································································· (XX) 2.4 截面设计 ························································································· (XX) 2.5 板的配筋计算 ················································································· (XX)

3 框架设计

3.1 计算简图及梁柱线刚度 ································································· (XX) 3.2 荷载计算 ························································································· (XX) 3.3 风荷载作用下的位移计算 ····························································· (XX) 3.4 内力计算 ························································································· (XX) 3.5 内力组合 ························································································· (XX) 3.6 截面设计和配筋计算 ····································································· (XX)

4 楼梯设计

4.1 设计资料 ························································································· (XX) 4.2 梯段板设计 ····················································································· (XX) 4.3 平台板设计 ····················································································· (XX) 4.4 平台梁设计 ····················································································· (XX)

5 基础设计

5.1 设计资料 ························································································· (XX) 5.2 中柱下基础设计 ············································································· (XX) 5.3 边柱下基础设计 ············································································· (XX)

参考文献 ·································································································· ······················································································································ (XX) 致 谢 ·································································································· (XX) 附录 A ······································································································ (XX)

1

大学学士学位论文

设计

1 设计资料

工程概况:厂区位于…………………….,其中,……………………………… 设计说明:本建筑抗震设防类别为丙类,建筑结构安全等级为二级,结构抗震设 防烈度为6度,设计基本地震加速度为0.05g,设计地震分组为第一 组,结构设计使用年限50年。地基基础设计等级为丙级,基础拟采用

浅基础。

2

大学学士学位论文

2 楼板设计

2.1 楼面结构平面布置

取第一层楼面上的①~⑥轴的楼面进行计算,标高3.3m处,楼面的结构布置如图所示。按双向板弹性理论计算。

①~⑥轴的结构平面布置图

2.2 荷载计算 2.2.1楼面面层做法

办公楼、展厅、会议室、阅览室、走道参《楼地面建筑构造》(01J304)42页

25号,具体做法见表,取装修荷载1.5 kN/m2

卫生间,上人屋面参《楼地面建筑构造》(01J304)43页28号,具体做法见表,取装修荷载2.2 kN/m2

3

大学学士学位论文

2

2.2.2 楼面面荷载

2.2.2.1.B1板荷载计算

恒荷载标准值:

装修层 1.5kN/m2 结构层(110mm厚钢筋混凝土楼板) 0.11×25=2.8kN/m2 小计 4.3kN/m2 活荷载标准值:

展厅: 3.5kN/m2 恒荷载设计值: g=1.2×4.3=5.2kN/m2 活荷载设计值: q=1.4×3.5=4.9kN/m2 合计: p=g+q=10.1kN/m2 按弹性理论计算: g’=g+q/2=7.7kN/m2,

q’= q/2=2.5 kN/m2,

2.2.2.2.B2板荷载计算

恒荷载标准值:

装修层 1.5kN/m2 结构层(90mm厚钢筋混凝土楼板) 0.9×25=2.3kN/m2 小计 3.8kN/m2 活荷载标准值:

走廊: 2.5kN/m2 恒荷载设计值: g=1.2×3.8=4.6kN/m2 活荷载设计值: q=1.4×2.5=3.5kN/m2

4

大学学士学位论文

合计: p=g+q=8.1kN/m2 按弹性理论计算: g’=g+q/2=6.4kN/m2

q’= q/2=1.8 kN/m2,

2.2.2.3.B3板荷载计算

恒荷载标准值:

装修层 1.5kN/m2 结构层(110mm厚钢筋混凝土楼板) 0.11×25=2.8kN/m2 小计 4.3kN/m2 活荷载标准值:

展厅: 3.5kN/m2 恒荷载设计值: g=1.2×4.3=5.2kN/m2 活荷载设计值: q=1.4×3.5=4.9kN/m2 合计: p=g+q=10.1kN/m2 按弹性理论计算: g’=g+q/2=7.7kN/m2,

q’= q/2=2.5 kN/m2,

2.2.2.4.B4板荷载计算

恒荷载标准值:

装修层 1.5kN/m2 结构层(90mm厚钢筋混凝土楼板) 0.9×25=2.3kN/m2 小计 3.8kN/m2 活荷载标准值:

展厅: 3.5kN/m2 恒荷载设计值: g=1.2×3.8=4.6kN/m2 活荷载设计值: q=1.4×3.5=4.9kN/m2 合计: p=g+q=9.5kN/m2 按弹性理论计算: g’=g+q/2=7.1kN/m2

q’= q/2=2.5 kN/m2,

2.2.2.5.B5板荷载计算

恒荷载标准值:

5

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