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MMcf
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Journal Articles
Journal:
SPE Drilling & Completion
Publisher: Society of Petroleum Engineers (SPE)
SPE Drill & Compl 25 (01): 137–148.
Paper Number: SPE-115546-PA
Published: 21 January 2010
...J.C.. C. Healy; John Martin; Brenton McLaury; Raynald Jagroop Summary The Cannonball field is a 1 Tcf gas/condensate development offshore Trinidad producing at a sustained rate in excess of 800 MMcf/D from three wells. The completion design selected was 7⅝- in. production tubing with an openhole...
Proceedings Papers
Publisher: Society of Petroleum Engineers (SPE)
Paper presented at the SPE Annual Technical Conference and Exhibition, September 21–24, 2008
Paper Number: SPE-115546-MS
...Upper Completion Abstract The Cannonball Field is a one Tcf gas condensate development offshore Trinidad producing at a sustained rate in excess of 800 MMcf/D from three wells. The completion design selected was 7⅝ inch production tubing with an open-hole gravel pack. The initial well (CAN01...
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in Erosion Study for a 400-MMcf/D Completion: Cannonball Field, Offshore Trinidad
> SPE Drilling & Completion
Published: 21 January 2010
Figure 13 Cumulative wastage at corner—400-MMcf/D case. More
Images
in Completion Design, Installation, and Performance—Cannonball Field, Offshore Trinidad
> SPE Drilling & Completion
Published: 23 December 2009
Fig. 12 Cumulative wastage at corner with initial rate of 390 MMcf/D. More
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in A Volumetric Analysis of Almond Formation (Cretaceous, Mesaverde Group) Gas Production in the Coal Gulch-Echo Springs Standard Draw Field Complex, Washakie Basin, Southwest Wyoming
> SPE Reservoir Evaluation & Engineering
Published: 01 August 1998
Fig. 10 Crossplot of GIP (in million cubic feet of gas per acre (MMcf of gas/ac)) vs. estimated ultimate recovery (in Bcf of gas). Lines of constant drainage area (at 100% recovery factor) shown for reference. More
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in A Volumetric Analysis of Almond Formation (Cretaceous, Mesaverde Group) Gas Production in the Coal Gulch-Echo Springs Standard Draw Field Complex, Washakie Basin, Southwest Wyoming
> SPE Reservoir Evaluation & Engineering
Published: 01 August 1998
Fig. 11 Upper Almond GIP (in MMcf of gas per acre). Note the truncation at the north and south ends of the fields caused by high water saturation and low effective permeability to gas. Compare with Fig. 8 estimated ultimate recovery truncation and mapped structure contours. Contour interval 4 MM... More
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in Expanding the Range for Predicting Critical Flow Rates of Gas Wells Producing from Normally Pressured Waterdrive Reservoirs
> SPE Production & Operations
Published: 01 August 1989
Figure 3 Flow-point-analysis plot for 2⅜-in. tubing, water/gas ratio of 100 bbl/MMcf, various permeabillties, and wellhead pressure of 1,000 psi. More
Images
in Expanding the Range for Predicting Critical Flow Rates of Gas Wells Producing from Normally Pressured Waterdrive Reservoirs
> SPE Production & Operations
Published: 01 August 1989
Figure 4 Flow-point-analysis plot for 2⅞-in. tubing, water/gas ratio of 100 bbl/MMcf, various permeabilities, and wellhead pressure of 1,000 psi. More
Images
in Expanding the Range for Predicting Critical Flow Rates of Gas Wells Producing from Normally Pressured Waterdrive Reservoirs
> SPE Production & Operations
Published: 01 August 1989
Figure 5 Flow-point-analysis plot for 3½-in. tubing, water/gas ratio of 100 bbl/MMcf, various permeabilities, and wellhead pressure of 1,000 psi. More
Images
in Expanding the Range for Predicting Critical Flow Rates of Gas Wells Producing from Normally Pressured Waterdrive Reservoirs
> SPE Production & Operations
Published: 01 August 1989
Figure 6 Flow-point-analysis plot for 3½-in. tubing, water/gas ratio of 900 bbl/MMcf, various permeabilities, and wellhead pressure of 1,000 psi. More
Images
in Expanding the Range for Predicting Critical Flow Rates of Gas Wells Producing from Normally Pressured Waterdrive Reservoirs
> SPE Production & Operations
Published: 01 August 1989
Figure 7 Flow-point-analysis plot for 3½-in. tubing, water/gas ratio of 100 bbl/MMcf, various permeabilities, and wellhead pressure of 500 psi. More
Images
in Expanding the Range for Predicting Critical Flow Rates of Gas Wells Producing from Normally Pressured Waterdrive Reservoirs
> SPE Production & Operations
Published: 01 August 1989
Figure 8 Flow-point-analysis plot for 3½-in. tubing, water/gas ratio of 100 bbl/MMcf, various permeabilities, and wellhead pressure of 1,500 psi. More
Images
Published: 09 October 2005
Figure 7 Ilustrate, chronologically, the accumulated production in MMCF More
Images
Published: 26 September 2004
Fig. 10 Productivity Index of the Average Well the Day after Producing 250 MMCF Cumulative Production [Actual Production / (7173 psi-WHFP)] More
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Published: 19 October 2010
Figure D-4 Final rate while Drilling Distribution Colour-Coded by EUR (MMcf). This dataset has 883 data points. More
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Published: 19 October 2010
Figure F-1 Distribution of cumulative gas at 12 months (MMcf) from Encana drilling programs from 2006 to 2009. This diagram demonstrates the year over year success in drilling consistent low risk programs. In 2009, 85% of wells had a cumulative gas at 12 months (C12) greater than 200 MMcf. More
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Published: 04 October 2009
Fig. 28 Accuracy of DAK method for gas condensates (200 STB/MMCF) More
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Published: 04 October 2009
Fig. 30 Accuracy of HY method for gas condensates (200 STB/MMCF) More
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Published: 04 October 2009
Fig. 32 Accuracy of DPR method for gas condensates (200 STB/MMCF) More
Images
Published: 04 October 2009
Fig. 34 Accuracy of BW method for gas condensates (200 STB/MMCF) More
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