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Analysis of Casing String Installation in Directional and Horizontal Oil Wells

The combined load condition that develops in a casing string during its installation in a directional or horizontal oil well needs to be considered in the structural integrity analysis routinely undertaken as part of the well completion design process. This paper presents a non-linear finite element analysis methodology, completed using ABAQUS 6.6, which simulates the installation of casing in directional/horizontal wells. The paper describes the development of the finite element model and demonstrates its use as an effective and reliable method for assessing casing structural integrity in the design of such well completions.

Customer Papers

Analysis of Casing String Installation in Directional and Horizontal Oil Wells
Deep and High Stress Mining – Deformation and Seismicity

Recent advances in mine scale simulation allow direct calibration of modelled displacements using measurements of surface subsidence, tunnel wall closure, shaft deformation and observed damage. The ability to correctly simulate these phenomena on a mine scale, in a single model constitutes a significant step change. Legacy geotechnical modelling packages have been unable to simulate the whole of mine deformation.

Customer Papers

Deep and High Stress Mining – Deformation and Seismicity
FLUID MECHANICS ANALYST 3DEXPERIENCE USER ROLE

Fluid Mechanics Analyst permits a seamless switch between applications, allowing users to be product-focused: applying the right tool at the right time in their workflow processes. This allows a much greater degree of flexibility and collaboration in the design and simulation process, where geometry changes are automatically updated and made immediately available on the same platform for the analyst to obtain updated results.

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FLUID MECHANICS ANALYST 3DEXPERIENCE USER ROLE
FEM Prediction of Dynamic Scratch Resistance of Polymer Coatings

Polymer coatings are used in pharmaceutical industry because of their wide functionality. To improve storage stability and performance of pharmaceutical products, the scratch resistance of the coatings must be improved (Gu, 2004). The scratch resistance of a common coating (150 μm HPMC) was predicted by ABAQUSTM simulation. Two models were used.

Customer Papers

FEM Prediction of Dynamic Scratch Resistance of Polymer Coatings
Transient Dynamic Analysis of a Head Surrogate Model

In this paper, an ABAQUS two dimensional transient modal dynamic finite element analysis was performed of a simplified brain model surrounded by cerebral spinal fluid and encased in PMMA. Viscoelastic material parameters of the brain tissue simulant were obtained from open literature. Low speed loading conditions were applied at different locations of this simple brain model structure. The von Mises stress and pressure contours at different times and displacement history plots are presented. The transient dynamic analyses provide insight into key areas of interest and information on the optimal placement of sensors in a more complex brain surrogate model.

Customer Papers

Transient Dynamic Analysis of a Head Surrogate Model
Development of 3D finite element model of umbilical systems for offshore application

Umbilical systems provide power and control (electricity, hydraulic power, chemical injection) to subsea oil and gas equipment. Electrical cables and hydraulic tubes are arranged in helical bundles and placed in successive layers depending on the design. Installations into increasingly deeper water place greater demands upon the structural components in terms of strength. 3D finite element analysis is an applicable technique in which to assess the strain and stress distribution and the interactions between components in such complex structures. The true geometry is respected and most of the simplifications of usual approaches can be relieved.

Customer Papers

Development of 3D finite element model of umbilical systems for offshore application
Cyclic martensitic phase transformation in multivariant mono-crystals at finite strains using UMAT

Numerical validation of a mico-macro material model for solid-solid martensitic phase transformation (PT) of multi-variant mono-crystals at finite strains with comparisons to linearized strains is presented, using reliable experimental data. The material and numerical models are based on work by Govindjee and Miehe (2001) and by Stein and Zwickert (2006) at linearized strains and extended to finite strains by Stein and Sagar (submitted 2006). In the above mentioned works, C1 -continuous thermo-mechanical micro-macro PT-theory using Bain’s principle is presented by a unified Lagrangian functional including phase evolution equations with mass conservation and quasi-convexification of energy wells.

Customer Papers

Cyclic martensitic phase transformation in multivariant mono-crystals at finite strains using UMAT
Finite Element Analysis of Blast Resistant Structures in the Oil and Gas Industry

A common requirement in the oil and gas industry is to design structures that are adequate against the effects of accidental gas explosions. This paper presents an overview on the methodologies involved in the study of the response of structures to resist blast and explosion, focusing on the use of nonlinear finite element analysis (NLFEA). NLFEA can be used to overcome the limitations of commonly used analytical methods which are predominantly developed for elastic response or limited plastic response and do not allow for large deflection and unstable responses.

Customer Papers

Finite Element Analysis of Blast Resistant Structures in the Oil and Gas Industry
Analysis of Oil Well Casing Connections Subjected to Non-axisymmetric Loads

Oilfield casings employ threaded connections which are designed to provide both structural and sealing integrity under installation and service loads. This paper presents a finite element methodology for analyzing casing connections subjected to non-axisymmetric loads. The analysis approach can be used for assessing connection structural integrity, sealability and fatigue life.

Customer Papers

Analysis of Oil Well Casing Connections Subjected to Non-axisymmetric Loads
Three Dimensional Numerical Modelling of Foundation Systems for Offshore Wind Energy Plants

Offshore wind energy plants promise to become an important source of energy in the near future. It is expected that within 10 years, wind parks with a total capacity of thousands of megawatts will be installed in European seas. The foundation of such offshore wind energy plants plays an important role in the stability of these structures. High demands have to be made concerning foundation design and construction methods to find economical and technically optimal solutions. Two foundation concepts which can be used in this field are the monopile and the tripod.

Customer Papers

Three Dimensional Numerical Modelling of Foundation Systems for Offshore Wind Energy Plants
Thread Connection Response to Critical Pressures

Thread connections are widely used in oil and gas industry. Determination of burst and collapse response of threads under critical pressure is important in a design process; however, a straight forward analysis of helical thread connections would require a huge model and long computing time. This paper will discuss other techniques that can determine the required information more efficiently.

Customer Papers

Thread Connection Response to Critical Pressures
Advanced simulation of 3D glass bottle forming with Abaqus/CAE, Abaqus/Standard and Abaqus/Explicit

Production of glass bottles requires blowing of the glass after entrance of a gob of molten glass in the blank mould. The final shape of the bottle is highly dependent on the viscosity of the glass, the blow-pressure and the temperature distribution in the glass and the mould and simulation of this complicated process enables optimization of the process conditions. During simulation of blowing of the glass, the mesh has to be adapted due to the extreme deformations of the mesh. Using the existing ALE-technique for this kind of applications requires a lot of userintervention and trial-and-error to create a mesh that suits both the initial and final topology of the glass.

Customer Papers

Advanced simulation of 3D glass bottle forming with Abaqus/CAE, Abaqus/Standard and Abaqus/Explicit
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