CR and Insp Interval (Chap 1-3 / A-1.3.11.13) Flashcards

1
Q

What is the definition of metal loss?

A

tprevious-tactual

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2
Q

How to calculate CR?

A

tprevious-tactual/time
time = short = last previous thickness measurement
time = long = before the previous thickness measurement

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3
Q

How to calculated remaining life?

A

tactual - tmin/CR

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4
Q

How to calculated remaining CA?

A

tactual - tmin = RCA

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5
Q

External Inspection Interval

A

-5 years or RCA/4N, whichever is less

N=Corrosion rate

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6
Q

External UT interval

A

-15 years or RCA/2N, whichever less

if CR is not known, than 5 years

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7
Q

Internal Inspection, and max ?

A

Shall not exceed 10 years unless otherwise in table 6.1, max is 20 year w/o RPB, 30 years w/ RPB..

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8
Q

What is table 6.1 in API653 (tank safeguards)

A
  1. fiberglass reinforce lining of the product side of tank = 5 years
  2. installation of internal thin-film = 2 years
  3. CP of the soil side = 5 years
  4. release prevention barrier = 10 years
  5. bottom CA greater than 0.15” = (actual CA / 15 mpy)
  6. Bottom is SS = 10 years
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9
Q

How to determine if the shell corroded area is acceptable for continued service?

A

(i) t1 > tmin
(ii) t2 > tmin (.6)
fit for service (need to add CA to tmin for FFS until next inspection)

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10
Q

What is the formula for criteria length?

A

L=3.7 (Dt2)^.5
D=ft
t2= lowest thickness point of a corroded area
L = cannot exceed 40 inches if it is need to repick the area.
-need at least 5 equally space points on L

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11
Q

How to calculated tmin (portion of a shell courses)

A
tmin=2.6(HDG)/SE 
where 
D=ft
H=ft (height of point taken to liquid level)
S= stresses found in table 4.1.
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12
Q

How to calculated tmin (entire shell courses)

A
tmin=2.6(H-1)DG)/SE 
where 
D=ft
H=ft (height of point taken to liquid level)
S= stresses found in table 4.1.
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13
Q

how to get t2?

A

lowest thickness point in a corroded area

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14
Q

how to get t1?

A

avg thickness of the area in a vertical plane.

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15
Q

what if your tank is not FFS?

A
  • corroded or damage area shall be repaired
  • reduce the allowable liquid
  • retire tank
  • reduce the inspection cycle
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16
Q

How to calculate the height allowed?

A

H=SEtmin/2.6 D

Uses lowest thickness value that does not meet criteria -CR to obtain tmin.

17
Q

What is the min bottom plate thickness ? (3)

A
  1. 0.10” - if no tank bottom/foundation design with no mean of detection /containment
  2. 0.05” if there is a means detection/containment
  3. 0.05” if the reinforce lining > 0.05” thickness
18
Q

What is the min bottom plate thickness formula?

A

MRT= (min RTbc-RTip) - Or (StPr +UPr)
RTbc = min remaining thickness of bottom side
RTip = min remaining thickness of top side
UPr=CR of soil/bottom side , 0 if CP
StPr=CR of top side, 0 if liner in good condition
Or=in service interval of operation in years

19
Q

What is min of critical zone thickness?

A

smaller of

  1. 1/2 the original bottom plant thickness (exclude CA)
  2. 50% of tmin of the lower shell course (not less than 0.1)
20
Q

Where is the critical zone of a plate?

A

3”

21
Q

annular plate min thickness

A

if sg <1.0, follow table 4.5 + CA

22
Q

How to know if the tank can last till next cycle of 10 years?

A

use formula MRT, and calculated for Or. MRT will based on tmin calculated(based on critical zone, annular plate, or min thickness table)

23
Q

What can use RBI for?

A

to establish the interval for subsequent inspection interval

24
Q

What is stress analysis for?

A

assess the annular palates or the critical zone of the sketch plates?