Bourbon103
Chemical
- Nov 30, 2005
- 32
There is an existing relief valve (1/2" x 3/4") on an 8" NPS #6 Fuel Oil header. The header is traced with 75# steam. The header is ~545 ft long. I am sizing the relief valve for thermal expansion and getting 273 GPM required flow, per API 521-2007, pg. 33, which in my experience is WAY more flow than I'm used to seeing for a therm. exp. scenario. I have used the following numbers:
Specific heat = 0.44 BTU/lb/F
cubic expansion coeff. = 0.0004 1/F (per Perrys Handbook)
specific density = 0.96
heat transfer rate: I did a heat transfer problem through the pipe using: hwall = 2*k/(di*ln(do/di)) then heat transfer rate = hwall*A*del. T with del. T being 100F and A being the surface area of the pipe.
Is there something I'm missing/Am I being too conservative with the heat transfer? It appears that the fact that it is 4xs more expansive than water and the large piece of blocked in pipe lends its self to a large required flow.
Thanks again.
Specific heat = 0.44 BTU/lb/F
cubic expansion coeff. = 0.0004 1/F (per Perrys Handbook)
specific density = 0.96
heat transfer rate: I did a heat transfer problem through the pipe using: hwall = 2*k/(di*ln(do/di)) then heat transfer rate = hwall*A*del. T with del. T being 100F and A being the surface area of the pipe.
Is there something I'm missing/Am I being too conservative with the heat transfer? It appears that the fact that it is 4xs more expansive than water and the large piece of blocked in pipe lends its self to a large required flow.
Thanks again.