1 / 69

ETCULVERT EXAMPLE

ETCULVERT EXAMPLE. ETCULVERT Design Process. Project Data Design Mode Geometry & Matls Loading Design Parameters Review / Optimize Switch to Analysis Update Reinforcing Optimize Print / Review. STEP 1 – PROJECT DATA. SCREEN 3-3. STEP 1 – PROJECT DATA. SCREEN 3-4.

Télécharger la présentation

ETCULVERT EXAMPLE

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. ETCULVERT EXAMPLE

  2. ETCULVERT Design Process • Project Data • Design Mode • Geometry & Matls • Loading • Design Parameters • Review / Optimize • Switch to Analysis • Update Reinforcing • Optimize • Print / Review

  3. STEP 1 – PROJECT DATA SCREEN 3-3

  4. STEP 1 – PROJECT DATA SCREEN 3-4

  5. STEP 2 – DESIGN MODE SCREEN 3-5

  6. STEP 2 – DESIGN MODE SCREEN 3-5

  7. STEP 2 – DESIGN MODE SCREEN 3-5

  8. STEP 2 – DESIGN MODE SCREEN 3-5

  9. STEP 2 – DESIGN MODE SCREEN 3-5

  10. STEP 3 – GEOMETRY & MATLS SCREEN 3-6

  11. STEP 3 – GEOMETRY & MATLS SCREEN 3-6

  12. STEP 3 – GEOMETRY & MATLS

  13. STEP 3 – GEOMETRY & MATLS SCREEN 3-6

  14. AASHTO DOES NOT DEFINE THE SKEW ANGLE, AASHTO ONLY CONSIDERS PARALLEL AND PERPENDICULAR APPLIED LIVE LOADS. SKEW ANGLE IN ETCULVERT ONLY IMPACTS THE SKEWED PORTION OF A CULVERT WHERE THE EFFECTIVE SPAN LENGTH CHANGES 30 < CHECK BOTH < 60 PERP (>60) PARALLEL (<30)

  15. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  16. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  17. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  18. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  19. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  20. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  21. STEP 3 – GEOMETRY & MATLS SCREEN 3-7

  22. STEP 4 – LOADING SCREEN 3-8

  23. SCREEN 3-9

  24. SCREEN 3-9

  25. SCREEN 3-9

  26. SCREEN 3-9 Only Matters if Lane Load is Included

  27. STEP 4 – LOADING SCREEN 3-8

  28. STEP 4 – LOADING SCREEN 3-8

  29. STEP 4 – LOADING SCREEN 3-8

  30. STEP 4 – LOADING SCREEN 3-8

  31. STEP 4 – LOADING SCREEN 3-8

  32. STEP 4 – LOADING SCREEN 3-8

  33. STEP 4 – LOADING SCREEN 3-8 TYPICAL

  34. STEP 5 – DESIGN PARAMETERS SCREEN 3-12

  35. STEP 5 – DESIGN PARAMETERS SCREEN 3-12

  36. STEP 5 – DESIGN PARAMETERS SCREEN 3-12

  37. STEP 5 – DESIGN PARAMETERS SCREEN 3-12

  38. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  39. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  40. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  41. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  42. STEP 5 – DESIGN PARAMETERS SCREEN 3-14 For permit analysis – check to use the Strength II/IB factors

  43. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  44. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  45. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  46. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  47. STEP 5 – DESIGN PARAMETERS SCREEN 3-14

  48. STEP 5 – DESIGN PARAMETERS SCREEN 3-14 When checked – will also calculate shear capacity per Appendix B5 and use the larger of the two.

  49. STEP 5 – DESIGN PARAMETERS SCREEN 3-15

  50. STEP 5 – DESIGN PARAMETERS SCREEN 3-17 Design Mode does not investigate shear reinforcement – concrete is assumed to provide only means of shear resistance. Shear reinforcement is only reviewed in Analysis Mode.

More Related