立方米液氨储罐设计详解.doc
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《过程设备设计》
课程设计说明书
设计题目:32M3液氨储罐设计
学 院:化学化工学院
班 级:化学工程与工艺1101班
姓 名:宋旭杰
学 号:2011002248
指导老师:
完成时间:2014.01.09
一、设计任务书
32M3液氨储罐设计
课程设计要求及原始数据(资料)
课程设计基本要求
按照国家压力容器设计标准、规范设计要求,掌握典型过程设备设计的过程。
设计计算采用手算,要求设计思路清晰,计算数据准确、可靠。
工程图纸要求计算机绘图。
独立完成。
原始数据
表1 设计条件表
序号 项目 数值 备注 1 名称 液氨储罐 2 用途 液氨储存 3 最高工作压力MPa 由介质温度确定 4 工作温度℃ -20—50 5 公称容积M3 6 工作压力波动情况 可不考虑 7 装置系数f 0.85 8 工作介质 液氨(中毒危害) 9 使用地点 太原市,室外 课程设计主要内容
设备工艺设计
设备结构设计
设备强度设计
技术条件编制
绘制设备总装配图
6、编制设计说明书
学生应交出的设计文件(论文)
1、设计说明书一份 2、总装配图一张(折合A1图纸一张)
目 录
设计任务书··············································· 1
课程设计内容············································· 5
工艺设计··············································· 5
一、设计压力的确定··································· 5
二、设计温度的确定··································· 6
机械设计··············································· 6
一、结构设计········································· 6
①设计条件········································· 6
②结构设计········································· 7
1、压力容器选择·································· 7
物料的物理化学性质
压力容器的类型
压力容器的用材
2、筒体和封头的结构设计·························· 8
筒体公称直径和筒体长度的确定
椭圆形封头内表面积、容积
3、各个接管的位置及法兰的选择···················· 9
接管的设计
法兰的设计
垫片的选择
4、人孔的选取····································12
5、液面计的设计··································14
6、鞍座的计算····································14
筒体的质量
封头的质量
液氨的质量
附件的质量
确定鞍座类型
鞍座安装位置确定
7、焊接接头设计··································16
回转壳体的焊接结构设计
接管与壳体的焊接结构设计
带补强圈的接管的焊接结构
强度计算·········································17
①容器的筒体和封头壁厚的设计·······················18
1、筒体名义厚度的初步确定························18
2、封头壁厚的计算································18
②开孔补强计算·····································19
1、补强设计方法判别······························19
2、有效高度的确定································20
3、有效补强面积··································20
4、接管的多余面积································20
③ 强度校核·························
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