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Proceedings Papers

Paper presented at the The Twenty-third International Offshore and Polar Engineering Conference, June 30–July 5, 2013
Paper Number: ISOPE-I-13-332
... ABSTRACT GTT performed Sloshing Model Tests with two different 2D model tanks representing a slice of the tank #2 of a membrane LNG carrier with the capacity of 150,000 m 3, at scales 1 : 10 and 1 : 40. The main goal was to study how the impacts and the resulting pressures are scaled, what...
Proceedings Papers

Paper presented at the The Thirteenth International Offshore and Polar Engineering Conference, May 25–30, 2003
Paper Number: ISOPE-I-03-385
... ABSTRACT In the present paper results of buckling collapse tests on 1/10- scale welded steel hull girder models of a chip carrier in sagging are reported. Two models were provided, one with carlings at the top of the side shellplating and the other without carlings. It has been found...
Proceedings Papers

Paper presented at the 15th World Petroleum Congress, October 12–17, 1997
Paper Number: WPC-28214
... by John Wiley & Sons 55 56 OUTLOOK FOR NATURAL GAS IN THE 2 I S T CENTURY-SUPPLY AND DEMAND Cl 011 TABLE I World non-renewable conventional energy resource base (January 1990) (10 toe)1*2*3 Crude oil Natural gas Coal Uranium Cumulative production Production (P) Identified reserves (R Undiscovered...
Proceedings Papers

Paper presented at the 12th World Petroleum Congress, April 26–May 1, 1987
Paper Number: WPC-22214
... e z I- W O 2 3 4 5 TIME (SECS) ( i i i ) COMPUTER SIMULATION OF AXIAL FORCE DISTRIBUTION IN BHA FROM 22HZ TO 27HZ L COLLARS (BHA) O 1 2 3 4 5 6 7 8 9 10 TIME (SECS) POSITION OF BIT Fig. 2. Downhole measurements of drilling conditions. mechanical and petrophysical parameters which could be integrated...
Proceedings Papers

Paper presented at the 11th World Petroleum Congress, August 28–September 2, 1983
Paper Number: WPC-20401
... activities it increased from 44% to 47% (Fig. 1). PER CENT Q1960 01980 a2000 50 40 30 20 10 O EXPLORATION REFINING MARKETINGIOISTR & PRODUCTION & BLENDING ADMINISUPPORT Fig. 1. Employees in world petroleum industry-estimated changes in main sectors 1960-2000. Taking the total number of employees in the oil...
Proceedings Papers

Paper presented at the 11th World Petroleum Congress, August 28–September 2, 1983
Paper Number: WPC-20422
... PROMOTER 1,000 m 1 u- a: 100 3 Cn o) w U 0, 10 F U a a 0" O 1 .393"K CYCLIC CAPACITY I I CO, LOADING IN SOLUTION, MOLE COJMOLE INITIAL K,CO, Fig. 4. Vapour-liquid equilibrium isotherms. for COz in amine promoted potassium carbonate solutions. for CO2 in amine promoted potassium carbonate solutions) shows...
Proceedings Papers

Paper presented at the 10th World Petroleum Congress, September 9–14, 1979
Paper Number: WPC-18225
.... The subdivision is illustrated in Fig. 1. The most favourable Zechstein 2 Carbonate reservoirs are the shallow marine, high-energy oölite deposits having average porosities of 10 to 15% and permeabilities of 1 to 5 mD. Although the diagenetic processes are poorly understood and unpredictable, we can say...
Proceedings Papers

Paper presented at the 9th World Petroleum Congress, May 11–16, 1975
Paper Number: WPC-16301
... and Adjacent Seas . During the period extending from the time of an original Memorandum of Agreement, under date of 3 PD lO(1) 4 Problems of Drilling in Deep Water 10 May, 1964, until the final agreement, under date of 2 September, 1965, four of the leading oceanographic institutions within the United States...
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Planar  fracture pressure maps — <span class="search-highlight">1</span> × <span class="search-highlight">10</span> <span class="search-highlight">1</span> s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 2 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 3 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span>...
Published: 28 September 2015
Figure D. 1 Planar fracture pressure maps — 1 × 10 1 s, 1 × 10 2 s, 1 × 10 3 s, 1 × 10 4 s and 1 × 10 5 s More
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Non-branched  fracture pressure maps — <span class="search-highlight">1</span> × <span class="search-highlight">10</span> <span class="search-highlight">1</span> s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 2 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 3 s, ...
Published: 28 September 2015
Figure D. 2 Non-branched fracture pressure maps — 1 × 10 1 s, 1 × 10 2 s, 1 × 10 3 s, 1 × 10 4 s and 1 × 10 5 s More
Images
Mono-branched  fracture pressure maps — <span class="search-highlight">1</span> × <span class="search-highlight">10</span> <span class="search-highlight">1</span> s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 2 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 3 s,...
Published: 28 September 2015
Figure D. 3 Mono-branched fracture pressure maps — 1 × 10 1 s, 1 × 10 2 s, 1 × 10 3 s, 1 × 10 4 s and 1 × 10 5 s More
Images
Dual-branched  fracture pressure maps — <span class="search-highlight">1</span> × <span class="search-highlight">10</span> <span class="search-highlight">1</span> s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 2 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 3 s,...
Published: 28 September 2015
Figure D. 4 Dual-branched fracture pressure maps — 1 × 10 1 s, 1 × 10 2 s, 1 × 10 3 s, 1 × 10 4 s and 1 × 10 5 s More
Images
Tri-branched  fracture pressure maps — <span class="search-highlight">1</span> × <span class="search-highlight">10</span> <span class="search-highlight">1</span> s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 2 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 3 s, ...
Published: 28 September 2015
Figure D. 5 Tri-branched fracture pressure maps — 1 × 10 1 s, 1 × 10 2 s, 1 × 10 3 s, 1 × 10 4 s and 1 × 10 5 s More
Images
Quad-branched  fracture pressure maps — <span class="search-highlight">1</span> × <span class="search-highlight">10</span> <span class="search-highlight">1</span> s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 2 s, <span class="search-highlight">1</span> × <span class="search-highlight">10</span> 3 s,...
Published: 28 September 2015
Figure D. 6 Quad-branched fracture pressure maps — 1 × 10 1 s, 1 × 10 2 s, 1 × 10 3 s, 1 × 10 4 s and 1 × 10 5 s More
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At permeability  k x   = <span class="search-highlight">1</span> × <span class="search-highlight">10</span> −13  m  2 ,  k y   = <span class="search-highlight">1</span> × <span class="search-highlight">10</span> −12  m  2  of S...
Published: 21 October 2019
Figure 5 At permeability k x = 1 × 10 −13 m 2 , k y = 1 × 10 −12 m 2 of Saturation of (a) Water during 1st stage at TPV = 0.25, (b) Gas during 2nd stage at TPV = 20.25 without foam injection (c) Gas during 2nd stage at TPV = 20.025 without foam injection, and (d) Gas saturation with foa... More
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Impact of varying D e  from <span class="search-highlight">1</span> × <span class="search-highlight">10</span> −7  to <span class="search-highlight">1</span> × <span class="search-highlight">10</span> −9 m 2 &#x2F;s on L p , M t , a...
Published: 18 April 2022
Fig. 11 Impact of varying D e from 1 × 10 −7 to 1 × 10 −9 m 2 /s on L p , M t , and the Recovery Factor Ratio. More
Proceedings Papers

Paper presented at the The Seventeenth International Offshore and Polar Engineering Conference, July 1–6, 2007
Paper Number: ISOPE-I-07-113
...) is approximated by a log-normal distribution, the scale parameter (m) being equal to 2.1 and the shape parameter (a) to 0.36 (Fig. 4). Sail height, m fr eq ue nc y (% ) 0 5 10 15 20 25 30 35 0,0 0,5 1,0 1,5 2,0 2,5 3,0 3,5 4,0 4,5 5,0 5,5 6,0 6,5 7,0 ( ) ( )[ ] 2 2 2 lnexp 2 1 a mx xa xf Fig. 4. Ice...
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Effect of reaction kinetics on oil recovery with Da = [<span class="search-highlight">1</span>, <span class="search-highlight">10</span>, <span class="search-highlight">10</span> 5 ] and no...
Published: 13 October 2021
Fig. 12 Effect of reaction kinetics on oil recovery with Da = [1, 10, 10 5 ] and no dispersion (Pe = ∞). More
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Comparison of fine 20×<span class="search-highlight">1</span>×40 and coarse <span class="search-highlight">10</span>×<span class="search-highlight">1</span>×<span class="search-highlight">10</span> simulations by use of Kyte an...
Published: 01 March 1999
Fig. 10 Comparison of fine 20×1×40 and coarse 10×1×10 simulations by use of Kyte and Berry's (Ref. 2 ) and Stone's (Ref. 3 ) methods for 2D cross section. More
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Comparison of fine 20×<span class="search-highlight">1</span>×40 and coarse <span class="search-highlight">10</span>×<span class="search-highlight">1</span>×<span class="search-highlight">10</span> simulations by use rock and d...
Published: 01 March 1999
Fig. 11 Comparison of fine 20×1×40 and coarse 10×1×10 simulations by use rock and directional pseudofunctions, large injection rate. More

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