000 | 05818nam a22004453i 4500 | ||
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001 | EBC5730841 | ||
003 | MiAaPQ | ||
005 | 20240724113624.0 | ||
006 | m o d | | ||
007 | cr cnu|||||||| | ||
008 | 240724s2019 xx o ||||0 eng d | ||
020 |
_a9781119284574 _q(electronic bk.) |
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020 | _z9781119283775 | ||
035 | _a(MiAaPQ)EBC5730841 | ||
035 | _a(Au-PeEL)EBL5730841 | ||
035 | _a(OCoLC)1090493004 | ||
040 |
_aMiAaPQ _beng _erda _epn _cMiAaPQ _dMiAaPQ |
||
050 | 4 | _aTN871.18 .C456 2019 | |
100 | 1 | _aChin, Wilson C. | |
245 | 1 | 0 |
_aFormation Testing : _bSupercharge, Pressure Testing, and Contamination Models. |
250 | _a1st ed. | ||
264 | 1 |
_aNewark : _bJohn Wiley & Sons, Incorporated, _c2019. |
|
264 | 4 | _c©2019. | |
300 | _a1 online resource (402 pages) | ||
336 |
_atext _btxt _2rdacontent |
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337 |
_acomputer _bc _2rdamedia |
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338 |
_aonline resource _bcr _2rdacarrier |
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490 | 1 | _aAdvances in Petroleum Engineering Series | |
505 | 0 | _aCover -- Title Page -- Copyright Page -- Contents -- Preface -- Acknowledgements -- 1 Formation Testing - Strategies, Capabilities and Solutions -- 1.1 Development Perspectives -- 1.2 Basic Forward and Inverse Models -- 1.3 Supercharge Forward and Inverse Models -- 1.4 Multiple Drawdown and Buildup Inverse Models -- 1.5 Multiphase Cleaning and Supercharge Model -- 1.6 System Integration and Closing Remarks -- 1.7 References -- 2 Supercharging - Forward Models and Inverse Solutions -- 2.1 Supercharge and Math Model Development -- 2.2 Supercharge Pressure and Ultimate Decay -- 2.3 United States Patent 7,243,537 B2 -- 2.4 Forward and Inverse Models with Supercharging - Drawdown-Only and Drawdown-Buildup Applications and Illustrative Examples -- 2.4.1 General Ideas in Formation Testing Formulations -- 2.4.2 Mathematical Formulation -- 2.5 Drawdown Only Applications -- 2.5.1 Example DD-1, High Overbalance -- 2.5.2 Example DD-2, High Overbalance -- 2.5.3 Example DD-3, High Overbalance -- 2.5.4 Example DD-4, Qualitative Pressure Trends -- 2.5.5 Example DD-5, Qualitative Pressure Trends -- 2.5.6 Example DD-6, "Drawdown-Only" Data with Multiple Inverse Scenarios for 1 md/cp Application -- 2.5.7 Example DD-7, "Drawdown-Only" Data with Multiple Inverse Scenarios for 0.1 md/cp Application -- 2.6 Drawdown - Buildup Applications -- 2.6.1 Example DDBU-1, Drawdown-Buildup, High Overbalance -- 2.6.2 Example DDBU-2, Drawdown-Buildup, High Overbalance -- 2.6.3 Example DDBU-3, Drawdown-Buildup, High Overbalance -- 2.6.4 Example DDBU-4, Drawdown-buildup, 1 md/cp Calculations -- 2.6.5 Example DDBU-5, Drawdown-buildup, 0.1 md/cp Calculations -- 2.7 Supercharged Anisotropic Flow Simulation Model -- 2.8 References -- 3 Pressure Transient Analysis - Multirate Drawdown and Buildup -- 3.1 Multirate Drawdown and Buildup Applications. | |
505 | 8 | _a3.1.1 Monitoring, Testing, Treatment and Retest -- 3.1.2 Hydrate Characterization and Production -- 3.2 Detailed Validations with Exact Solutions -- 3.2.1 Validation of PTA-App-01 Inverse Model -- 3.2.2 Validation of PTA-App-02 Inverse Model -- 3.2.3 Validation of PTA-App-03 Inverse Model -- 3.2.4 Validation of PTA-App-04 Inverse Model -- 3.2.5 Validation of PTA-App-05 Inverse Model -- 3.2.6 Validation of PTA-App-06 Inverse Model -- 3.2.7 Validation of PTA-App-07 Inverse Model -- 3.2.8 Validation of PTA-App-08 Inverse Model -- 3.2.9 Validation of PTA-App-09 Inverse Model -- 3.2.10 Validation of PTA-App-10 Inverse Model -- 3.2.11 Validation of PTA-App-11 Inverse Model -- 3.3 References -- 4 Practical Applications and Examples -- 4.1 Review Objectives -- 4.2 Practical Applications and Examples -- 4.2.1 Isotropic Medium Pressure Testing -- 4.2.1.1 Steady-state method -- 4.2.1.2 Drawdown-buildup method -- 4.2.1.3 Drawdown only method -- 4.2.2 Anisotropic Media Pressure Testing (Using FT-01) -- 4.2.3 Supercharge Effects in Drawdown-Buildup -- 4.2.4 Supercharge Mechanics in Detail - Reservoir Fluid More Viscous Than Mud -- 4.2.5 Supercharge Mechanics in Detail - Reservoir Fluid Less Viscous Than Mud -- 4.2.6 Supercharge Mechanics in Detail - Reservoir Fluid Viscosity Equals Mud Viscosity -- 4.2.7 Perfectly Balanced Well, Mechanics in Detail - Reservoir Fluid Viscosity Equals Mud Viscosity -- 4.2.8 Underbalance Mechanics in Detail - Reservoir Fluid Viscosity Equals Mud Viscosity -- 4.2.9 Comparing Overbalance vs Underbalance Pressures for Same Reservoir and Tool Pumping Conditions -- 4.2.10 Consequences of Non-Performing Pump Piston -- 4.2.11 Batch Processing Using FT-00 -- 4.2.12 Depth of Investigation Using FT-00 DOI Function -- 4.2.13 History Matching Using FT-06 Batch Mode -- 4.2.13.1 Operating FT-06 batch simulator. | |
505 | 8 | _a4.2.13.2 Source code documentation (color coded) -- 4.2.13.3 A final example - concise operational summary -- 4.2.14 Gas Pumping -- 4.2.14.1 Several field notes -- 4.2.14.2 Review of steady-state direct and inverse methods -- 4.2.14.3 Transient gas calculations -- 4.3 References -- 5 Best Practices and Closing Remarks -- 5.1 Best Practices -- 5.2 Recommended Reading -- Cumulative References -- Index -- About the Author -- EULA. | |
588 | _aDescription based on publisher supplied metadata and other sources. | ||
590 | _aElectronic reproduction. Ann Arbor, Michigan : ProQuest Ebook Central, 2024. Available via World Wide Web. Access may be limited to ProQuest Ebook Central affiliated libraries. | ||
650 | 0 | _aReservoir oil pressure-Testing. | |
655 | 4 | _aElectronic books. | |
776 | 0 | 8 |
_iPrint version: _aChin, Wilson C. _tFormation Testing _dNewark : John Wiley & Sons, Incorporated,c2019 _z9781119283775 |
797 | 2 | _aProQuest (Firm) | |
830 | 0 | _aAdvances in Petroleum Engineering Series | |
856 | 4 | 0 |
_uhttps://ebookcentral.proquest.com/lib/orpp/detail.action?docID=5730841 _zClick to View |
999 |
_c9171 _d9171 |