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Phase Behavior of Petroleum Reservoir Fluids Book

Phase Behavior of Petroleum Reservoir Fluids
Phase Behavior of Petroleum Reservoir Fluids, Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors' experience in petroleum proce, Phase Behavior of Petroleum Reservoir Fluids has a rating of 3.5 stars
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Phase Behavior of Petroleum Reservoir Fluids, Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors' experience in petroleum proce, Phase Behavior of Petroleum Reservoir Fluids
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  • Phase Behavior of Petroleum Reservoir Fluids
  • Written by author Karen Schou Pedersen
  • Published by Taylor & Francis, Inc., October 2006
  • Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors' experience in petroleum proce
  • Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors’ experience in petroleum
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PETROLEUM RESERVOIR FLUIDS Reservoir Fluid Constituents Properties of Reservoir Fluid Constituents Phase Envelopes Classification of Petroleum Reservoir Fluids COMPOSITIONAL ANALYSES Analyzing a Bottom Hole Sample by Gas Chromatography (GC)
Reservoir Fluid Composition from Separator Samples Mud-Contaminated Samples Quality Control of Reservoir Fluid Samples PVT EXPERIMENTS Constant-Mass Expansion Experiment Constant-Volume Depletion Experiment Differential Liberation Experiment Separator Test Swelling Test Viscosity Experiment Slim Tube Experiment Multiple-Contact Experiment CUBIC EQUATIONS OF STATE The van der Waals Equation Redlich—Kwong Equation The Soave—Redlich—Kwong (SRK) Equation Peng—Robinson (PR) Equation Peneloux Volume Correction Other Cubic Equations of State Equilibrium Calculations Nonclassical Mixing Rules Other Equations of State C7++ CHARACTERIZATION Classes of Components Binary Interaction Coefficients Lumping Delumping Mixing of Multiple Fluids Characterizing of Multiple Compositions to the Same Pseudocomponents Heavy Oil Compositions FLASH AND PHASE ENVELOPE CALCULATIONS Pure Component Vapor Pressures from Cubic Equations of State Mixture Saturation Points from Cubic Equations of State Flash Calculations Phase Envelope Calculations Phase Identification PVT SIMULATION Constant Mass Expansion (CME)
Constant Volume Depletion (CVD)
Differential Liberation Separator Test Swelling Test What to Expect from a PVT Simulation PHYSICAL PROPERTIES Density Enthalpy Internal Energy Entropy Heat Capacity Joule—Thomson Coefficient Velocity of Sound Example Calculations REGRESSION TO EXPERIMENTAL PVT DATA Shortcomings of Parameter Regression Analyzing for Errors in Compositional Data Tc, Pc, and w of C7+ Fractions Regressing on Coefficients in Property Correlations Object Functions and Weight Factors Example of Regression for Gas Condensate Tuning on Single Pseudocomponent Properties Near-Critical Fluids Fluids Characterized to the Same Pseudocomponents TRANSPORT PROPERTIES Viscosity Thermal Conductivity Gas/Oil Surface Tension Diffusion Coefficients WAX FORMATION Experimental Studies of Wax Precipitation Thermodynamic Description of Melting of a Pure Component Modeling of Wax Precipitation Wax PT Flash Calculations Viscosity of Oil—Wax Suspensions Wax Inhibitors ASPHALTENES Experimental Techniques for Studying Asphaltene Precipitation Asphaltene Models GAS HYDRATES Types of Hydrates Modeling of Hydrate Formation Hydrate Inhibitors Hydrate Simulation Results Hydrate P/T Flash Calculations COMPOSITIONAL VARIATIONS WITH DEPTH Theory of Isothermal Reservoir Theory of Nonisothermal Reservoir MINIMUM MISCIBILITY PRESSURE Three-Component Mixtures MMP of Multicomponent Mixtures FORMATION WATER AND HYDRATE INHIBITORS Hydrocarbon—Water Phase Equilibrium Models Experimental Hydrocarbon—Water Phase Equilibrium Data Water Properties Phase Envelopes of Hydrocarbon—Aqueous Mixtures SCALE PRECIPITATION Criteria for Salt Precipitation Equilibrium Constants Activity Coefficients Solution Procedure Example Calculations Appendix A Index
*Each chapter contains a References section for further information


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Phase Behavior of Petroleum Reservoir Fluids, Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors' experience in petroleum proce, Phase Behavior of Petroleum Reservoir Fluids

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Phase Behavior of Petroleum Reservoir Fluids, Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors' experience in petroleum proce, Phase Behavior of Petroleum Reservoir Fluids

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Phase Behavior of Petroleum Reservoir Fluids, Understanding the phase behavior of the various fluids present in a petroleum reservoir is essential for achieving optimal design and cost-effective operations in a petroleum processing plant. Taking advantage of the authors' experience in petroleum proce, Phase Behavior of Petroleum Reservoir Fluids

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