How to buy the best reservoir modelling?

When you want to find reservoir modelling, you may need to consider between many choices. Finding the best reservoir modelling is not an easy task. In this post, we create a very short list about top 8 the best reservoir modelling for you. You can check detail product features, product specifications and also our voting for each product. Let’s start with following top 8 reservoir modelling:

Best reservoir modelling

Product Features Editor's score Go to site
Reservoir Modelling: A Practical Guide Reservoir Modelling: A Practical Guide
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Challenges in Modelling and Simulation of Shale Gas Reservoirs (SpringerBriefs in Petroleum Geoscience & Engineering) Challenges in Modelling and Simulation of Shale Gas Reservoirs (SpringerBriefs in Petroleum Geoscience & Engineering)
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Reservoir Model Design: A Practitioner's Guide Reservoir Model Design: A Practitioner's Guide
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Percolation Theory In Reservoir Engineering Percolation Theory In Reservoir Engineering
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Modelling Oilfield Scale Squeeze Treatments: From Core to Reservoir (SpringerBriefs in Petroleum Geoscience & Engineering) Modelling Oilfield Scale Squeeze Treatments: From Core to Reservoir (SpringerBriefs in Petroleum Geoscience & Engineering)
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Microseismic Monitoring and Geomechanical Modelling of CO2 Storage in Subsurface Reservoirs (Springer Theses) Microseismic Monitoring and Geomechanical Modelling of CO2 Storage in Subsurface Reservoirs (Springer Theses)
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The Structural Geology Contribution to the Africa-Eurasia Geology: Basement and Reservoir Structure, Ore Mineralisation and Tectonic Modelling: ... in Science, Technology & Innovation) The Structural Geology Contribution to the Africa-Eurasia Geology: Basement and Reservoir Structure, Ore Mineralisation and Tectonic Modelling: ... in Science, Technology & Innovation)
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Principles of Applied Reservoir Simulation Principles of Applied Reservoir Simulation
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Related posts:

1. Reservoir Modelling: A Practical Guide

Description

The essential resource to an integrated approach to reservoir modelling by highlighting both the input of data and the modelling results

Reservoir Modelling offers a comprehensive guide to the procedures and workflow for building a 3-D model. Designed to be practical, the principles outlined can be applied to any modelling project regardless of the software used. The author a noted practitioner in the field captures the heterogeneity due to structure, stratigraphy and sedimentology that has an impact on flow in the reservoir.

This essential guide follows a general workflow from data QC and project management, structural modelling, facies and property modelling to upscaling and the requirements for dynamic modelling. The author discusses structural elements of a model and reviews both seismic interpretation and depth conversion, which are known to contribute most to volumetric uncertainty and shows how large-scale stratigraphic relationships are integrated into the reservoir framework. The text puts the focus on geostatistical modelling of facies and heterogeneities that constrain the distribution of reservoir properties including porosity, permeability and water saturation. In addition, the author discusses the role of uncertainty analysis in the static model and its impact on volumetric estimation. The text also addresses some typical approaches to modelling specific reservoirs through a mix of case studies and illustrative examples and:

  • Offers a practical guide to the use of data to build a successful reservoir model
  • Draws on the latest advances in 3-D modelling software
  • Reviews facies modelling, the different methods and the need for understanding the geological interpretation of cores and logs
  • Presents information on upscaling both the structure and the properties of a fine-scale geological model for dynamic simulation
  • Stresses the importance of an interdisciplinary team-based approach

Written for geophysicists, reservoir geologists and petroleum engineers, Reservoir Modelling offers the essential information needed to understand a reservoir for modelling and contains the multidisciplinary nature of a reservoir modelling project.

2. Challenges in Modelling and Simulation of Shale Gas Reservoirs (SpringerBriefs in Petroleum Geoscience & Engineering)

Description

This book addresses the problems involved in the modelling and simulation of shale gas reservoirs, and details recent advances in the field. It discusses various modelling and simulation challenges, such as the complexity of fracture networks, adsorption phenomena, non-Darcy flow, and natural fracture networks, presenting the latest findings in these areas.

It also discusses the difficulties of developing shale gas models, and compares analytical modelling and numerical simulations of shale gas reservoirs with those of conventional reservoirs. Offering a comprehensive review of the state-of-the-art in developing shale gas models and simulators in the upstream oil industry, it allows readers to gain a better understanding of these reservoirs and encourages more systematic research on efficient exploitation of shale gas plays.

It is a valuable resource for researchers interested in the modelling of unconventional reservoirs and graduate students studying reservoir engineering. It is also of interest to practising reservoir and production engineers.

3. Reservoir Model Design: A Practitioner's Guide

Feature

Reservoir Model Design

Description

This book gives practical advice and ready to use tips on the design and construction of subsurface reservoir models. The design elements cover rock architecture, petrophysical property modelling, multi-scale data integration, upscaling and uncertainty analysis. Philip Ringrose and Mark Bentley share their experience, gained from over a hundred reservoir modelling studies in 25 countries covering clastic, carbonate and fractured reservoir types. The intimate relationship between geology and fluid flow is explored throughout, showing how the impact of fluid type, production mechanism and the subtleties of single- and multi-phase flow combine to influence reservoir model design.

Audience:
The main audience for this book is the community of applied geoscientists and engineers involved in the development and use of subsurface fluid resources. The book is suitable for a range of Masters level courses in reservoir characterisation, modelling and engineering.

Provides practical advice and guidelines for users of 3D reservoir modelling packages

Gives advice on reservoir model design for the growing world-wide activity in subsurface reservoir modelling

Covers rock modelling, property modelling, upscaling and uncertainty handling

Encompasses clastic, carbonate and fractured reservoirs

4. Percolation Theory In Reservoir Engineering

Description

This book aims to develop the ideas from fundamentals of percolation theory to practical reservoir engineering applications. Through a focus on field scale applications of percolation concepts to reservoir engineering problems, it offers an approximation method to determine many important reservoir parameters, such as effective permeability and reservoir connectivity and the physical analysis of some reservoir engineering properties. Starring with the concept of percolation theory, it then develops into methods to simple geological systems like sand-bodies and fractures. The accuracy and efficiency of the percolation concept for these is explained and further extended to more complex realistic models.

Percolation Theory in Reservoir Engineering primarily focuses on larger reservoir scale flow and demonstrates methods that can be used to estimate large scale properties and their uncertainty, crucial for major development and investment decisions in hydrocarbon recovery.

Readership: Graduates and researchers interested or working in reservoir engineering.

5. Modelling Oilfield Scale Squeeze Treatments: From Core to Reservoir (SpringerBriefs in Petroleum Geoscience & Engineering)

Description

This book provides a comprehensive introduction to scale management. Starting with an introduction to oilfield scale, including material on predicting the problem and evaluating treatment options, it discusses various management and inhibition techniques before presenting squeeze treatments.

It explores the automatic optimization of squeeze designs, the use of tracers to estimate scale inhibitor placement, the mathematics of the transport and adsorption involved in squeeze treatments and describes the treatment life cycle in detail. Further, it presents all the steps necessary for the design of a cost-effective squeeze treatment for a real-world field case.

This book is of interest to researchers in the field of petroleum engineering, especially those specializing in flow assurance, transport in porous media, or the modeling and optimization of scale treatment designs. It is also a valuable resource for well engineers working in the oil industry and service companies providing scale management treatments.

6. Microseismic Monitoring and Geomechanical Modelling of CO2 Storage in Subsurface Reservoirs (Springer Theses)

Description

This thesis presents an impressive summary of the potential to use passive seismic methods to monitor the sequestration of anthropogenic CO2 in geologic reservoirs. It brings together innovative research in two distinct areas seismology and geomechanics and involves both data analysis and numerical modelling. The data come from the Weyburn-Midale project, which is currently the largest Carbon Capture and Storage (CCS) project in the world. James Verdons results show how passive seismic monitoring can be used as an early warning system for fault reactivation and top seal failure, which may lead to the escape of CO2 at the surface.

7. The Structural Geology Contribution to the Africa-Eurasia Geology: Basement and Reservoir Structure, Ore Mineralisation and Tectonic Modelling: ... in Science, Technology & Innovation)

Description

This edited volume is based on the best papers accepted for presentation during the 1st Springer Conference of the Arabian Journal of Geosciences (CAJG-1), Tunisia 2018. The book is of interest to all researchers in the fields of Structural Geology, Stratigraphy, Ore Deposits, Regional Tectonics and Tectonic Modelling.
This volume offers an overview of multidisciplinary studies on the broader Africa-Eurasia geology. Main topics include:
1. Basement Geology
2. Fluid-rock interaction, hydrothermalism and ore deposits
3. Reservoir geology, structure and stratigraphy
4. Mediterranean Tectonics
5. The Alpine-Himalayan convergence zone
6. Tectonic Modelling

8. Principles of Applied Reservoir Simulation

Description

Reservoir engineers today need to acquire more complex reservoir management and modeling skills. Principles of Applied Reservoir Simulation, Fourth Edition, continues to provide the fundamentals on these topics for both early and seasoned career engineers and researchers. Enhanced with more practicality and with a focus on more modern reservoir simulation workflows, this vital reference includes applications to not only traditional oil and gas reservoir problems but specialized applications in geomechanics, coal gas modelling, and unconventional resources. Strengthened with complementary software from the author to immediately apply to the engineers projects, Principles of Applied Reservoir Simulation, Fourth Edition, delivers knowledge critical for todays basic and advanced reservoir and asset management.

  • Gives hands-on experience in working with reservoir simulators and links them to other petroleum engineering activities
  • Teaches on more specific reservoir simulation issues such as run control, tornado plot, linear displacement, fracture and cleat systems, and modern modelling workflows
  • Updates on more advanced simulation practices like EOR, petrophysics, geomechanics, and unconventional reservoirs

Conclusion

By our suggestions above, we hope that you can found the best reservoir modelling for you. Please don't forget to share your experience by comment in this post. Thank you!

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