3D LAYOUT OF PETROCHEMICAL PLANT IN AUTO CAD

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3D LAYOUT OF PETROCHEMICAL PLANT IN AUTO CAD.it is very important for autocad 3d learners. go through it u may get some idea

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3D LAYOUT OF PETROCHEMICAL PLANT IN AUTO CAD

  1. 1. 3D LAYOUT OF PETROCHEMICAL PLANT By: K.Pramod (e110031) Rajiv Gandhi institute of petroleum technology
  2. 2. URL: http://www.google.co.in/img res?q=refinery+plant+layout &um=1&hl=en&&sa=N&biw =1366&bih=667&tbm=isch& tbnid=OAZPKpEdQ_GkwM: &imgrefurl=http://www.srsbi odiesel.com
  3. 3.  EXTRUDE  PRESSPULL  SWEEP  REVOLVE  LOFT  UNION  HATCH  GRADIENT
  4. 4. EXTRUDE: Creates a 3d solid or surface are surface by extruding a 2d object. PRESSPULL: Press or pulls bounded areas. SWEEP: Creates a 3d solid or surface by sweeping a 2d object.
  5. 5. REVOLVE: Creates a 3d solid or surface by sweeping a 2d object around its own axis. LOFT: Creates a 3d solid or surface in the space between several cross sections. GRADIENT: Fill the enclosed path with colour.
  6. 6. ` MAKING OF 3D PLANT: 1)Cylinder 2)Box 3)Poly solid 4)Wedge 5)Planar surface 6)Flats 7)sphere
  7. 7. SCALE USED: radius of cylinder or tank is 79.2. height of the box is 205. height of the slab is 445. height of the plane taken is 440.
  8. 8. DIFFERENT STAGES OF DIAGRAM: 1)Making a plane surface as
  9. 9. 2) Making small cuboidal blocks as
  10. 10. 3)FOR bigger cubes or blocks we just operate press and pull so the Object is as
  11. 11. 4)Making a cylinder or oil tank by selecting a circle in 2d and then Extruding as
  12. 12. 5)Making a slab by selecting a box in top v and Join it by cylindrical rods vertically and Union it. And it as follows
  13. 13. 6)Making a small truck type object is to take a wedge and attach it with sphere in top view.
  14. 14. 7)COOLING TOWER: First take a box and then attach torus to it on the top view as
  15. 15. Different views of 3d layout : 1)Top view
  16. 16. 2) Left view:
  17. 17. Right view:
  18. 18. Front view:
  19. 19. Isometric view:
  20. 20. Advantages to draw in 3d view: 1) 1. Save time and money and reduce errors with the dynamic engineering model 2) 2. Reduce purchase, deployment, and support costs with one complete solution.
  21. 21. 3) Increase value to client by delivering more design alternatives in less time. 4) 7. Complete projects faster and reduce the chance of coordination errors using the Civil 3D project environment.

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