RI 7272 Gasflood Performance Prediction For The Cooper Sand Of The Fork Run Pool, Warren And McKean Counties, Pa.

The National Institute for Occupational Safety and Health (NIOSH)
K-H. Frohne
Organization:
The National Institute for Occupational Safety and Health (NIOSH)
Pages:
53
File Size:
14212 KB
Publication Date:
Jan 1, 1969

Abstract

This report presents a study of the Cooper sand of the Fork Run pool of Warren and McKean Counties, Pa., and a prediction of the secondary oil recovery by gasflooding the reservoir. A computer program employing a modification of the Craig, Geffen, and Morse secondary recovery calculation was used to make the gas flood performance forecast and is presented in the appendix. The Cooper sand reservoir in the Fork Run pool lies at a depth of about 1,900 feet and covers an area 1/2 mile wide by 2-1/4 miles long. Original oil in place is estimated to have been 8,266,000 STB. The primary recovery mechanism is solution gas drive, and ultimate primary recovery may reach 20 percent over a well life of 90 years. Two computer predictions were made for gas flooding the Cooper reservoir. The first was for a 25-acre pilot five-spot utilizing existing wells, but project economics were poor since only 25 percent of injection gas is utilized for pilot oil recovery. Recovery was 71,000 STB, or 22 percent of oil in place at flood initiation, but required 25,700 scf gas injected per STB of oil recovered. In the second prediction, pilot area performance was projected for the entire Fork Run pool, and economics became good. Recovery was 1,753,000 STB from 25 five-spots after the injection of only 6,400 scf per STB of oil recovered.
Citation

APA: K-H. Frohne  (1969)  RI 7272 Gasflood Performance Prediction For The Cooper Sand Of The Fork Run Pool, Warren And McKean Counties, Pa.

MLA: K-H. Frohne RI 7272 Gasflood Performance Prediction For The Cooper Sand Of The Fork Run Pool, Warren And McKean Counties, Pa.. The National Institute for Occupational Safety and Health (NIOSH), 1969.

Export
Purchase this Article for $25.00

Create a Guest account to purchase this file
- or -
Log in to your existing Guest account