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بررسی عملکرد ژل های پیش ساخته شده جهت کنترل پیشروی جبهه تزریق و بهبود تولید در مخازن نفت: آنالیز مکانیزم های جابجایی در ابعاد حفره
پاپروسچی، امین صادق Paprouschi, Aminsadegh

Cataloging brief

بررسی عملکرد ژل های پیش ساخته شده جهت کنترل پیشروی جبهه تزریق و بهبود تولید در مخازن نفت: آنالیز مکانیزم های جابجایی در ابعاد حفره
پدیدآور اصلی :   پاپروسچی، امین صادق Paprouschi, Aminsadegh
ناشر :   صنعتی شریف
سال انتشار  :   1397
موضوع ها :   ژل ذره ای پیش ساخته Preformed Particle Gel سینتیک تورم Swelling Kinetics آزمون انطباق...
شماره راهنما :   ‭66-51833

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  • Chapter 1 (13)
    • 1.1. STATEMENT AND SIGNIFICANCE (13)
    • 1.2. OBJECTIVES (18)
    • 1.3. SCOPE OF THIS RESEARCH (19)
  • Chapter 2 (20)
    • 2.1 The Synthesis and Experimental study (20)
    • 2.2 Field-Related Studies Application (33)
  • Chapter 3 (38)
    • 3.1 Synthesis Preformed Particle Gel (38)
      • 3.1.1 Description of Materials for Synthesis (41)
      • 3.1.2 Monomers (42)
      • 3.1.3 Cross-linked Polymer Used in Gel (42)
      • 3.1.4 Initiator (42)
      • 3.1.5 Nano Graphene (43)
      • 3.1.6 Sodium Silicate: (45)
      • 3.1.7 Commercial Super Absorbent Polymer (SAP) (45)
    • 3.2 Gel Performance Characteristic in Bulk Test (46)
      • 3.2.1 Swelling Capacity (46)
      • 3.2.2 Thermal Stability (47)
      • 3.2.3 De-swelling (48)
      • 3.2.4 Dehydration (48)
      • 3.2.5 Rheology of Gel (49)
        • 3.2.5.1 Important Factors in Rheology (49)
        • 3.2.5.2 Anton Paar MCR 301 Rotational Rheometer Tests (50)
      • 3.2.6 pH Meter (51)
      • 3.2.7 Laboratory Oven (52)
    • 3.3 Dynamic Tests and Method (HELE Shaw-Cell) (53)
      • 3.3.1 HELE-SHAW CELL Setup (54)
      • 3.3.2 Setup Segments (57)
        • 3.3.2.1 DP Pressure (58)
        • 3.3.2.2 DBR Pump (59)
        • 3.3.2.3 Data Logger (59)
    • 3.4 Scanning Electron Microscope (60)
  • Chapter 4 (61)
    • 4.1 Synthesis and Bulk test (61)
      • 4.1.1 Super Absorbent Polymer Swelling Capacity (61)
      • 4.1.2 Swelling of the PPG with Different Crosslinked (64)
      • 4.1.3 Introduction of the Silicate Preformed Particle Gel (SPPG) with Regards to Nano Graphene (67)
      • 4.1.4. Swelling Kinetics of Hydrogel Mechanism (68)
      • 4.1.5 Swelling Kinetics of the PPGs with KCl (69)
      • 4.1.6 Swelling Kinetics of PPGs with NaCl (71)
      • 4.1.7 Swelling kinetics of the PPGs with MgCl2 (74)
        • 4.1.8.1 Swelling in 200,000 ppm Brine in 24 C (75)
        • 4.1.8.2 Swelling in 200,000 ppm Brine at 60 C (76)
      • 4.1.9 Swelling of SNGP 2 in Different Salinities (77)
      • 4.1.10 Swelling in Various pHs (78)
      • 4.1.11 De-swelling and Re-swelling (80)
      • 4.1.12 Dehydration (82)
      • 4.1.13 Thermal Stability Test (83)
      • 4.1.14 Economic Analysis of Materials used in Gel Synthesis (84)
    • 4.2 Rheological Behavior (85)
      • 4.2.1 Frequency Sweep: (85)
      • 4.2.2 Amplitude Sweep Test (88)
      • 4.2.3 Temperature Sweep with a Time (93)
    • 4.3 SEM of Dry Particle Gel Properties (94)
    • 4.4 Dynamic Tests (102)
      • 4.4.1 Hele-Shaw Cell (102)
        • 4.4.1.1 Fracture Opening (102)
        • 4.4.1.2 PPG Injection (103)
        • 4.4.1.3 Resistance Factor of Gel (107)
        • 4.4.1.4 Residual Resistance Factor (108)
        • 4.4.1.5 ,-. Threshold Pressure (111)
        • 4.4.1.6 Damage factor Due to the gate opening analysis (112)
  • Chapter 5 (115)
  • Chapter 6 (118)
  • Nomenclature (119)
  • References (121)
  • Appendix A (125)
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