The density/neutron porosity readings are nearly the same in both sandstones, so that suggests liquid hydrocarbon (oil). HOWEVER, in order to get some practice, I want you to evaluate the upper sandstone as a gas reservoir. Estimate the OGIP assuming a drainage area of 250 acres, a geothermal gradient of 1.2°F/100 ft, and a pore pressure gradient of 0.65 psi/ft.
The density/neutron porosity readings are nearly the same in both sandstones, so that suggests liquid hydrocarbon (oil). HOWEVER, in order to get some practice, I want you to evaluate the upper sandstone as a gas reservoir. Estimate the OGIP assuming a drainage area of 250 acres, a geothermal gradient of 1.2°F/100 ft, and a pore pressure gradient of 0.65 psi/ft.
Applications and Investigations in Earth Science (9th Edition)
9th Edition
ISBN:9780134746241
Author:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Publisher:Edward J. Tarbuck, Frederick K. Lutgens, Dennis G. Tasa
Chapter1: The Study Of Minerals
Section: Chapter Questions
Problem 1LR
Related questions
Question
Question 4

Transcribed Image Text:0
GR
API
150
5000
5010
5020
5030
5040
5050
5060
5070
5080
5090
0.2
0.2
0.2
ILD
ohm-m
ILM
ohm-m
LL8
ohm-m
2000
2000
2000
BBB00
5100
3. The resistivity logs above are for the same interval as the logs for questions 1 & 2. Answer the following
questions related to these logs with the following additional information: For Archie's Equations, a=0.81,
m=n=2. Also, Rw=0.05 ohm-m.
a.
Estimate the water saturation for each sandstone zone.
b. Which sandstone is a better prospect for producing oil and/or gas? Explain, giving at least two
reasons to support your choice.
4. The density/neutron porosity readings are nearly the same in both sandstones, so that suggests liquid
hydrocarbon (oil). HOWEVER, in order to get some practice, I want you to evaluate the upper sandstone
as a gas reservoir. Estimate the OGIP assuming a drainage area of 250 acres, a geothermal gradient of
1.2°F/100 ft, and a pore pressure gradient of 0.65 psi/ft.
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