hydraulic fracture modeling software

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Integrated, multidisciplinary expertise to help operators achieve optimal production while achieving cost efficiencies. The advanced fully 3D finite element simulation ensures that fracture geometry is rigorously modeled, giving more accurate geometry estimates, particularly in complex multi-layered formations. The current version offers enhanced process modeling capabilities, including Klinkenberg effect, non-Darcy flow, gas adsorption, and geomechanics effect. StimPlan™ can calculate this as part of the design process, resulting in a reduction in the time required to generate and select an effective treatment schedule. Please contact Ms. Alexandra Jalili at With its ability to accurately model multi-stage hydraulic fractures in horizontal wells, incorporate the effects of natural fractures (DFN) and visualize microseismic events, StimPlan™ is the perfect choice for shale oil and gas hydraulic fracture optimization. We developed a general three-dimensional hydraulic fracturing model that accounts for fluid flow and heat transfer in the wellbore and the fracture, and the geomechanics of fracturing including fracture initiation, growth and propagation, and the stress shadow effect. In addition, it presents a hybrid-fracture model for modeling gas flow in tight and shale gas reservoirs, produced through horizontal wells with multi-stage hydraulic fractures. This 3-D hydraulic fracture modeling was validated by mini-frack and post-frack measurements to establish a scientific basis. In this paper we describe a method we developed to couple hydraulic fracture modeling software with the embedded discrete fracture model (EDFM). With a comprehensive integrated toolkit and the industry’s most rigorous geometry models, StimPlan™ helps operators worldwide maximize their well performance while lowering expenditure and reducing their environmental footprint, however complex their reservoir or fracture treatment design. This powerful toolset helps you optimize every facet of fracture design and engineering to increase production rates, reservoir recovery and economic performance. Hydraulic Fracturing Engineering and Software Solution, for Your Most Challenging Reservoirs. Post-frac benchmarking studies show that rigorous hydraulic stimulation design and treatment optimization helps both reduce operational problems and significantly improve well performance. Integrated, multidisciplinary expertise to help operators achieve optimal production while achieving cost efficiencies. GOHFER, which stands for Grid Oriented Hydraulic Fracture Extension Replicator, is a planar 3-D geometry fracture simulator with a fully coupled fluid/solid transport simulator. RN-GRID is a new generation hydraulic fracturing software (simulator and suite), designed to be convenient, accurate and fast. 1.6 This guide is one of a series on ground-water modeling codes (software) and their applications, such as Guide D5447 and Guide D5490.Other standards have been prepared on environmental modeling, such as StimPlan™ is a complete and integrated software solution for hydraulic fracture design, analysis, and optimization. According to the 2017 Worldwide Survey of the Market for Hydraulic Fracturing: GOHFER software 3D is the #1 preferred fracture simulator in … Case studies for Montney, East Duvernay, Bakken, and Horizontal Well Pad Development. The Project. GOHFER has been continually developed and refined by Dr. Robert D. Barree & … ~ 2017 Worldwide Survey of the Market for Hydraulic Fracturing / Kimberlite International Oilfield Research In the past 10 years, Golder has incorporated critical new capabilities for analysis and modeling of hydraulic fractures into FracMan and created the world’s first truly 3-D hydraulic fracture DFN simulator. FRACMOD specializes in seismic evaluation, structural modeling, log interpretation, and reservoir simulation. Subnav. FracPro: Fracture Design Modeling Software. Pre- and post-frac analysis tools include well test analysis, minifrac analysis, step down test analysis, and production decline analysis. StimPlan™ V8 Cloud subscriptions available now! ResFrac’s unique modeling capability and expertise provide industry-leading insight into the development of shale resources. By combining technology, big data and multidisciplinary excellence, FRACMOD can improve ultimate recoveries while minimizing costs and the environmental footprint. Reservoir Simulation. Tight Gas Reservoir (TGR) Fracture Model. In fracture modeling software, often fractures are simulated as planar fractures even in unconventional reservoirs. The complexities of hydraulic fracture geometry are better understood with the aid of software that integrates and visualizes key data sources such as well image logs, geomechanical models, discrete fracture networks, and microseismic surveys to give completion engineers the information needed to plan and execute optimal frac strategies. With experience in over 40 countries, FRACMOD provides an array of services custom designed for international portfolios. Comprehensive databases for fluid and proppant data are also available. Evolution of Fracture Geometry with Offset Depletion Fracturing begins to develop at the treatment well after pressurizing the depleted area. Alternatively, for more accurate predictions of well performance gains, pre- and post-frac production can be modeled using the 3D numerical reservoir simulator integrated into StimPlan™. fracDesign is a hydraulic fracture design software. shows the model of an induced hydraulic fracture in a multilayered reservoir using TerraFrac TM, 2D finite element software based on the PL3D hydraulic fracturing approach. Post-frac production can be predicted using a range of analytical methods. Modeling of hydraulic fracturing (HF) is the complex problem, which includes the description of many physical processes, including: the fluid flow in the fracture, deformation of the rock, fracture of the rock, proppant flow, etc. FRACMOD has done projects in over 25 countries worldwide helping our clients improve profitability and develop strong insights. Description: fracture flow) models, or mass transport models. Research about numerical modeling for concrete hydraulic fracturi ng by XFEM is explored. Hydraulic Fracture Model Comparison Study: Complete Results Sandia National Laboratories GRI Contract Number: 5089-211-2059 N. R. Warpinski February 1991 -Februa~, 1993 Topical Report To develop a mmparative study of hydraulic-fracture simulators in order to provide stimulation engineers StimPlan™ is a complete software solution for hydraulic fracture design, analysis and optimization. Elizaveta Gordeliy (Schlumberger-Doll Research) Keller 3-180 : 2:50 pm - 3:10 pm: Break : Keller 3-176 : 3:10 pm - 3:35 pm: Higher-order Finite Elements Methods for Elliptic Problems with Interfaces. Fluid flow in the fracture is coupled with the reservoir rock elasticity and fracture propagation is controlled by the tensile strength of the rock. Case studies for Montney, East Duvernay, Bakken, and Horizontal Well Pad Development. Case Studies. No one has time to create a pump schedule through trial and error. However, experimental studies and microseismic mapping have proven that hydraulic fractures in shale reservoirs have a complex pattern for propagation. It is applicable for a wide range of geological formations from shale to sandstones. StimPlan™ is a complete and integrated software solution for hydraulic fracture design, analysis, and optimization. ResFrac is the first three-dimensional, fully compositional simulator to seamlessly couple hydraulic fracturing, wellbore, geomechanical, and reservoir simulation. Software. The StimPlan™ fracture optimization module integrates fracture geometry modeling, reservoir simulation, and economics to provide detailed production and economic evaluation. The new approach lies in the fact that hydraulic fractures can follow arbitrary fracture paths in 2D/3D simulations; as dictated by stress state, material properties and heterogeneity rather than the topology of the finite element mesh. Hydraulic fracturing, or fracking, is a decades-old technology used to develop oil and natural gas resources from deep shale formations. The world standard for fracture design and analysis tools The FRACPRO software portfolio provides unparalleled capabilities and performance for fracture simulation and analysis. Abstract. GOHFER is also considered to be the most accurate frac modeling software package by almost a 4:1 margin over its closest competition." GOHFER software has been continually developed and refined by Dr. Robert D. Barree & Barree & Associates LLC for almost 40 years. Using industry leading technology, FRACMOD provides fully integrated solutions for our clients through sub-surface modeling and data analytics. Hydraulic Fracture Modeling delivers all the pertinent technology and solutions in one product to become the go-to source for petroleum and reservoir engineers. For the given set of reservoir, fluid and proppant properties the design process produces the pumping schedule which will create the optimal fracture geometry to achieve maximum well's productivity. ajalili@nsitech.com for more information. All rights reserved, StimPlan™ Changes 7.20 Frac-to-Frac Stress Shadowing. Through optimizing the hydraulic fracture treatment, StimPlan™ helps operators not only increase production but also drive down well costs through savings in proppant, pumping, and water disposal. Incorporate effects of hydraulic fracture stimulation into simulation models. This helps maximize well performance and profitability from a planned treatment. To determine which hydraulic fracture modeling method might be the best, a selection of methods is chosen based on what is available and what is commonly used in various reservoir simulation software packages. Please contact Ms. Alexandra Jalili at, © 2020 NSI Tech, LLC. Utilizing the Planar3D model and Unified Fracture Design concept it allows comparison of the design frac geometry with the optimal one to maximize the rate of the fractured well in complex environments. We have presented a method for modeling hydraulic fracture propagation and interaction with a network of natural fractures in a geothermal reservoir. © 2018 Fracture Modeling Inc.All Rights Reserved. Philip H. Winterfeld, Yu-Shu Wu, in Hydraulic Fracture Modeling, 2018. In hydraulic fracture modeling, simple techniques are used to predict the size and nature of the fractures near the wellbore before the fracking is undertaken. A range of fracture geometry simulation options are available within StimPlan™, from quick-look pseudo 3D methods to fully 3D gridded methods for more complex problems. FRACMOD is your "One-Stop-Shop" for fully integrated reservoir studies. The PDF file of this paper is in Russian. Modeling Hydraulic Fracture Propagation Using a Coupled Extended Finite Element Method. With an ever-increasing emphasis on minimizing the environmental impact of oil and gas exploitation, StimPlan™ also helps ensure environmentally responsible hydraulic fracture operations. GOHFER software is the most powerful, comprehensive tool available in the petroleum industry for the design, analysis and optimization of hydraulic fracture and acid fracture stimulation treatments. Hydraulic Fracture Turning (3D) Parameter Value Model Size 3x3x3 m E35 GPa K IC 2 MPa m1/2 σ E 10 MPa σ N 18 MPa σ Z 26 Mpa Q1.0 m3/min µ1 cP ARMA 15-0530, “Finite Element Modeling of Curving Hydraulic Fractures and NearWellbore Hydraulic Fracture Complexity.” S S symmetry Article Application of Symmetry Law in Numerical Modeling of Hydraulic Fracturing by Finite Element Method Shanhui Sun 1,2, Meihua Zhou 2,*, Wei Lu 1 and Afshin Davarpanah 3,* 1 College of Mathematics and Statistics, Suzhou University, Suzhou 215006, China; Sh.sun@163.com (S.S.); Lu.wei12@163.com (W.L.) CARBO Ceramics Inc. Fig. More than twice as much as its closest competitor. Hydraulic Fracture Modeling. The fracture simulations are based on a variational phase‐field approach that proved high numerical stability. 2 School of Management, China University of Mining and … StimPlan™ incorporates easy tools for importing, editing, and analysis of all the log, pressure, and rate data required for fracture design. Hydraulic fracturing is one of the most effective reservoir stimulation techniques performed to reduce the resistance to fluid flow to the well. onPlan is a hydraulic fracture simulation software for designing a fracture treatment. ResFrac software is the only commercial three-dimensional, fully compositional simulator to seamlessly couple hydraulic fracturing, wellbore, geomechanical, and reservoir simulation. Providing tools and approaches, this multi-contributed reference presents current and upcoming developments for modeling rock fracturing including their limitations and problem-solving applications. MoFrac is a software package developed at MIRARCO MINING INNOVATION that generates 3D fracture network models for rock mass characterization. TGR case study. Implementation of the XFEM for hydraulic fracturing is presented. By building the virtual work principle of the fracture problem considering water pressure on the crack surface, the governing equations of XFEM for hydraulic fracture modeling are derived. StimPlan™ V8 Cloud subscriptions available now! Driven by the need for safer and more efficient geotechnical design, MoFrac implements methods developed by R. Mohan Srivastava to create DFNs well-suited to both civil and mining applications. The RN-GRID mathematical model uses the Planar3D concept, which most accurately describes the complex geometry of the fracture that occurs in the rock during hydraulic … Modeling Hydraulic Fractures. This research was performed in the Petrel/Eclipse reservoir simulation environment. Effective reservoir stimulation techniques performed to reduce the resistance to fluid flow in Petrel/Eclipse... First three-dimensional, fully compositional simulator to seamlessly couple hydraulic fracturing,,. 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