# United Natural Gas Company — Pipeline Safety Interpretation

- **operation:** document
- **citation:** PI-71-008
- **title:** United Natural Gas Company — Pipeline Safety Interpretation
- **source type:** guidance
- **agency:** Pipeline and Hazardous Materials Safety Administration
- **status:** guidance
- **official:** true
- **published on:** 1971-01-20
- **effective on:** Not available
- **summary:** PI-71-008 response to United Natural Gas Company concerning 192.241, 192.719.
- **machine formats:** - **json:** https://regulus.evalyn.ai/document/phmsa-interpretation-pi-71-008.json
- **markdown:** https://regulus.evalyn.ai/document/phmsa-interpretation-pi-71-008.md
- **app url:** https://regulus.evalyn.ai/document/phmsa-interpretation-pi-71-008
- **source url:** https://www.phmsa.dot.gov/sites/phmsa.dot.gov/files/legacy/interpretations/Interpretation%20Files/Pipeline/1971/PI71008.pdf
**body:**

<<<PAGE 1>>>

January 20, 1971
Mr. Richard M. DiValerio
United Natural Gas Company
308 Seneca Street
Oil City, Pennsylvania 16301
Dear Mr. DiValerio:
This is in reply to your letter requesting an interpretation of the relationship of 49 CFR, Sections
192.241(b) and 192.719(a)(2).
Section 192.241(b) established limited exceptions to the requirement for non-destructive testing
of all welds on pipe to be operated at 20 percent or more of SMYS, while §192.719(a)(2) deals
only with repair welds.
As you have mentioned repairs usually consist of replacing a short section of pipe. The tie-in
welds on these short sections of pipe are generally more difficult to make and more often
performed under adverse conditions. Experience has demonstrated there is a greater need to
require weld quality in these situations.
Therefore, if these welds are not strength tested, the requirements of §192.719(a)(2) must
override the exceptions in §192.241(b).
Thank you for your interest in pipeline safety.
Sincerely,
/signed/
Joseph C. Caldwell
Director, Acting
Office of Pipeline Safety
DB/dal/192.241
71-01-20
1

<<<PAGE 2>>>

December 21, 1970
Mr. J. F. Nienhueser
Administrative Assistant
Missouri Power and Light Company
101 Madison Street
Jefferson City, Missouri 65101
Dear Mr. Nienhueser:
This is in answer to your letter of November 4, 1970, requesting information on hoop stress and
the current method used by this office for determining hoop stress in steel pipe.
Hoop stress is defined in Section 805.32 of ANSI B31.8 (formerly USAS B31.8) as follows:
"Hoop stress is the stress in a pipe wall, acting circumferentially in a plane perpendicular
to the longitudinal axis of the pipe and produced by the pressure of the fluid in the pipe."
The hoop stress, then, is an action which is attempting to pull the pipe apart in a circumferential
direction with the "pull" being produced on the pipe wall by the internal pressure of the natural
gas or other fluid in the pipe.
Barlow's Formula is the common method used to determine hoop stress in the wall of pipe. The
formula is written as follows:
S = PD
2t
where: S = hoop stress, psi
P = internal pressure, psi
D = diameter, in.
t = wall thickness, in.
This basis formula written in terms of solving for the pressure is used in Part 192 to determine the
design pressure for steel pipe. The formula, located in Section 192.105, contains factors in
addition to the basic formula which limit the design pressure in gas pipelines for safety purposes.
An example of applying hoop stress in Part 192 would probably be helpful. Section 192.241(b)
requires the nondestructive testing of welds on pipeline "to be operated at a pressure that
produces a hoop stress of 20 percent or more of SMYS." If, the instance, the pipe being installed
DB/dal/192.241
71-01-20
2

<<<PAGE 3>>>

in Grade B, the SMYS is 35,000 pounds per square inch (psi) and 20 percent of 35,000 psi is
7,000 psi. For this particular example then, nondestructive testing of welds is required where the
operating pressure will produce a hoops stress of 7,000 psi or more.
The pressure which will produce a hoop stress of 7,000 psi is now determined by using the
formula in Section 192.105 and solving for "P". In this example all of the elements in the formula
would be as defined in Section 192.105 except for "S" which is no longer the hoop stress at yield
but a hoop stress of 7,000 psi, and "P" which is no longer the design pressure but the pressure
which will produce a hoop stress of 7,000 psi.
If the proposed operating pressure is equal to or greater than the pressure solved for,
nondestructive testing is required. If the proposed operating pressure is less than this pressure,
nondestructive testing is not required.
I hope this explanation answers your questions. If I can be of any further assistance, please
contact me.
Sincerely,
/signed/
Joseph C. Caldwell
Director, Acting
Office of Pipeline Safety
DB/dal/192.241
71-01-20
3
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