Sharif Digital Repository / Sharif University of Technology
    • [Zoom In]
    • [Zoom Out]
  • Page 
     of  0
  • [Previous Page]
  • [Next Page]
  • [Fullscreen view]
  • [Close]
 
بررسی عملکرد پمپ های درون چاهی و فرازآوری مصنوعی با گاز در میزان بهره دهی چاه های کم بازده در میدان الوند
پورنوری، پوریا Pornouri, Pouria

Cataloging brief

بررسی عملکرد پمپ های درون چاهی و فرازآوری مصنوعی با گاز در میزان بهره دهی چاه های کم بازده در میدان الوند
پدیدآور اصلی :   پورنوری، پوریا Pornouri, Pouria
ناشر :   صنعتی شریف
سال انتشار  :   1394
موضوع ها :   فرازآوری با گاز Gas Lift بهره دهی چاه Well Productivity ارزیابی عملکرد Performance...
شماره راهنما :   ‭66-47690

Find in content

sort by

Bookmark

  • Introduction (15)
    • Location Alvand field (15)
    • Facts (16)
    • Field description (16)
  • Artificial lift methods and current status in field development (20)
    • The need for artificial lift (20)
    • Review of artificial lift techniques (22)
    • Current status of the role of artificial lift in field development (24)
    • Selection of artificial lift criteria (28)
      • Well and reservoir characteristics (28)
      • Field Location (29)
      • Operational Problems (30)
      • Economics (30)
    • Implementation of artificial lift selection techniques (32)
      • Selection by Consideration of Depth/Rate System (34)
      • Selection by Net Present Value Comparison (34)
    • Long term reservoir performance and facility constraints (35)
    • Artificial lift on Alvand (37)
  • Electrical Submersible Pumps (E.S.P) (38)
    • Electric submersible pumps (ESPs) (38)
    • Well completion employing electric submersible pumps (ESPs) (45)
      • Typical ESP applications (45)
      • Horizontal Wells (46)
      • “Y” Tool (47)
    • Basic Pump Selection (48)
    • Advantages and Disadvantages of Electric Submersible Pumps (51)
    • Centrifugal pump (51)
      • Seal Chamber section (55)
      • The Motor (56)
      • The power cable (56)
      • ESP run life (57)
        • Case studies (61)
      • ESP design for Alvand (62)
      • ESP secondary effect (64)
    • Monitoring the performance of electric submersible pumps (65)
    • New Technology (69)
      • Coiled Tubing Deployed ESP’s (69)
      • Auto “Y” Tool (71)
      • Dual Pump Installations (71)
    • Reducing water production (74)
    • Electric Submersible Pump Performance (76)
    • Simplified Electric Submersible Pump Design (77)
  • Gas lift (83)
    • Introduction (83)
    • Continuous gas lift (83)
    • Gas lift applications (89)
    • Gas lift advantages and limitations (91)
    • Gas lift design objectives (92)
    • Gas lift design constraints (94)
    • Gas lift design parameters (94)
    • The surface gas network (95)
    • The unloading process described (96)
    • Safety Factors (104)
    • Gas lift Valve Spacing Criteria summarized (104)
    • Side pocket mandrels (105)
      • Other uses of side pocket mandrels (109)
    • Gas lift valve mechanics (109)
      • Casing or Inflow Pressure Operated (IPO) Valves (110)
      • Dome Pressure Calibration (112)
      • Temperature Correction (113)
      • Valve Flow Performance (113)
      • Dynamic Valve Performance (114)
      • Valve Performance Flow Model (117)
      • Proportional Response Valves (118)
      • Dynamic Valve Response and Gas Lift Completion Modeling (119)
    • Well Stability (121)
    • Gas lift design procedures (122)
    • An example design - optimizing the performance of a gas lifted well (124)
      • An Example Design - Gas Lift Unloading Calculations (132)
    • Further Gas Lift System Considerations (132)
    • Further gas lift system calculations (133)
    • Operational problems (134)
      • Gas Quality (134)
      • Solids (135)
      • Changes in reservoir performance (136)
      • Gas Supply Problems (136)
    • Well Start-Up (Unloading) (137)
    • Well Stability (138)
    • Dual Gas Lift (141)
    • trouble shooting (141)
    • trouble shooting techniques (142)
    • Some Field Examples of operational problems: (142)
    • Field production optimization (143)
    • New technology for continuous flow gas lift (148)
    • Intermittent gas lift (150)
    • Graphical gas lift design exercise for well (152)
      • Initial Conditions - the “Dead” Well (154)
      • Construction of the “Equilibrium Curve” (154)
    • The Unloading Process (157)
  • Simulation and Design (166)
    • The Prosper overview: (166)
      • Basic theory of PROSPER (168)
    • Building a base model for DPG-1 and DPH-1 (169)
      • PVT (170)
      • IPR (171)
      • Equipment (172)
      • Results (178)
    • Gas lift design (180)
      • Modelling DPG-1 and DPH-1 with gas lift (181)
      • Positioning of valves (185)
      • Results (187)
      • Sensitivities of injection depth (187)
    • ESP design (189)
      • . Modeling DPG-1 and DPH-1 with ESP (191)
      • Results (192)
    • Production forecast (193)
      • Well DPG-1 (194)
      • Well DPH-1 (197)
  • Economical evaluation (202)
    • Gas Lift economical evaluation (204)
    • ESP economical evaluation (205)
  • Results & Conclusions (206)
  • References (208)
  • Abbreviations (alphabetically) (209)
Loading...