dee- -1 50 STD/D 1,000 For the 1D, block-centered grid shown in Fig. 1,000 ft determine the pressure distribution during the first year of produc- tion. The initial reservoir pressure is 6.000 psia. The rook and fluid properties for this problem are Ax -1,000 I1, Ay-1,000 ft, Az =75 ft, B = 1 RB/STB, G=3.5 x 10-6 pui 1, ke- 15 md, 0.18, pe) - 10 cp, and B; =1 RB/STB. Use timestep sizes of At-10, 15, and 30 days. Assume B, acts as a constant within the pressure range of interest. L= 5000 , loob grid ds tulation after I yer using at=10 days. find Pressve - 200 -100 95= 150 100 using matlab

Computer Networking: A Top-Down Approach (7th Edition)
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ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
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-150 OTD/D
1,000
75
F 1,000 t
For ihe 1D, block-centered grid shown in Fig.
器-。
delermine the pressure distrib>ution during the first year of produc-
tion. Th: initial reservoir pressure is 6.000 psia. The rock and fluid
properties for this problem are A - 1,000 1, Ay-1,000 ft, Az=75
ft, B = 1 RB/STB, G=3.5 x 10-6 pei 1, kx - 15 md, p =- 0.18, te, -
10 cp, and B;=1 RB/STB.
Use timestep sizes of At=10, 15, and 30 days. Assume Bị acts as
a constarnt within the pressure range of interest.
L= 5000 ,
%3D
loob
grid
Pressue ds tmla'tion
after
I year using at=10 days.
find
-100
9.
200
95=
150
100
using matlab
Transcribed Image Text:-150 OTD/D 1,000 75 F 1,000 t For ihe 1D, block-centered grid shown in Fig. 器-。 delermine the pressure distrib>ution during the first year of produc- tion. Th: initial reservoir pressure is 6.000 psia. The rock and fluid properties for this problem are A - 1,000 1, Ay-1,000 ft, Az=75 ft, B = 1 RB/STB, G=3.5 x 10-6 pei 1, kx - 15 md, p =- 0.18, te, - 10 cp, and B;=1 RB/STB. Use timestep sizes of At=10, 15, and 30 days. Assume Bị acts as a constarnt within the pressure range of interest. L= 5000 , %3D loob grid Pressue ds tmla'tion after I year using at=10 days. find -100 9. 200 95= 150 100 using matlab
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