waliq
Mechanical
- Jan 28, 2019
- 53
Hi all,
I has been designing a support lug for a vertical vessel (outer diameter = 610 mm). Length (T/T) 4100mm, MOC: SA 240 316L.
However, I was checking the feasibility of support lugs to vendor in lieu of skirt support ( owing to bottom head inspection issues of using a skirt on such a small dia vessel)
However, my support lugs calculations gives me the following failure for test case
Pm (SUS) | 109.60 115.15 | Passed |
Pm (SUS+OCC) | 148.53 138.18 | Failed |
Pm+Pl (SUS) | 111.12 172.72 | Passed |
Pm+Pl (SUS+OCC)| 150.83 207.26 | Passed |
Pm+Pl+Q (TOTAL)| 148.76 345.44 | Passed
I have searched in WRC 107 and ASME sec VIII, Div2 regarding the calculations for SUS+OCC case but couldnt find formulas.
I need to know the parameters, these induced stresses are dependent upon.
I has been designing a support lug for a vertical vessel (outer diameter = 610 mm). Length (T/T) 4100mm, MOC: SA 240 316L.
However, I was checking the feasibility of support lugs to vendor in lieu of skirt support ( owing to bottom head inspection issues of using a skirt on such a small dia vessel)
However, my support lugs calculations gives me the following failure for test case
Pm (SUS) | 109.60 115.15 | Passed |
Pm (SUS+OCC) | 148.53 138.18 | Failed |
Pm+Pl (SUS) | 111.12 172.72 | Passed |
Pm+Pl (SUS+OCC)| 150.83 207.26 | Passed |
Pm+Pl+Q (TOTAL)| 148.76 345.44 | Passed
I have searched in WRC 107 and ASME sec VIII, Div2 regarding the calculations for SUS+OCC case but couldnt find formulas.
I need to know the parameters, these induced stresses are dependent upon.