Robust, cloud-based application for transient thermal simulation and advanced stress analysis, directly meeting any corporate design standard

CCUS & ENERGY TRANSITION

Utilize our software to harness proven CCUS models and design wells for the next generation of large-scale sequestration and geothermal projects.

OPEN DIGITAL WORKFLOWS

Integrate our open APIs into internal digital ecosystems and combine best-in-class applications with the right level of client control and automation.

COMPLEX WELL DESIGN

Carry on the legacy of excellence in safe and efficient design for HPHT, deepwater, unconventional and complex wells based on proven standards and theory.

Perical - Fully transient thermal analysis throughout the wellbore and formation for all phases of well life.

Fully transient thermal analysis throughout the wellbore and formation for all phases of well life.

Transient Thermal Simulation

The PERICAL module generates a comprehensive and fully transient thermal analysis that spans the entire wellbore and formation, providing critical insights across all phases of a well's lifecycle.  Wellbore construction operations such as drilling and cementing provide greater accuracy in casing design and well integrity verification.  Life cycle well operations during all phases of reservoir and field development simulate optimized and worst case scenarios.  All thermal simulations may be seamlessly linked into casing and tubing design load cases.

Advanced Equations of State

Advanced Equations of State (EOS) may be selected for reservoir hydrocarbons, CO dominant CCS mixtures and advanced drilling systems.  Industry standard correlations are implemented for fluid rheology. Heat transfer modes of all types across the multiple layers of wellbore and formation are considered both radially and in depth. 

Perivis - Life cycle loads analysis on all wellbore casing and completion components with buckling and limit states.

Life cycle loads analysis on all wellbore casing and completion components with buckling and limit states.

Tubular Stress Analysis

PERIVIS gives well design engineers an intuitive and seamless solution to facilitate detailed wellbore tubular analysis. Casing and tubing design loads may be assessed as well as associated loads on wellbore components such as tubular connections, packers, SSSVs, hangers and wellheads. 

Design Load Criteria

Design criteria are fully customizable to accommodate corporate tubular design requirements and standards.  Buckling analysis and stress limit states are incorporated into detailed analysis.  Thermal simulations in PERIFOR™ may be seamlessly linked to tubular design load cases for optimized and efficient well design.

Perinix - Thermally coupled pressure simulation for annular pressure build-up with fluid Equations of State.

Thermally coupled pressure simulation for annular pressure build-up with fluid Equations of State.

Annular Pressure Buildup over the spectrum of wellbore operation conditions results

Annular Pressure Build-Up

PERINIX, an integral component of the PERIFOR suite, enables well engineers to anticipate annular pressure build-up (APB) over the spectrum of wellbore operating conditions.  Fluid expansion or contraction behavior is predicted based on fully linked thermal and hydraulic simulations in PERICAL. Wellbore radial deformation and contact stresses with the cement sheath and formation can be exported for detailed well integrity analysis and optimization.  APB results may be combined with casing and tubing design loads for wellbore survivability analysis.

Perimot - Going beyond simple wellhead movement to simulate load sharing across the full wellbore system.

Going beyond simple wellhead movement to simulate load sharing across the full wellbore system.

Wellhead Movement lift-off results plot and grid

Wellhead Movement

The PERIMOT module will enable PERIFOR to take advanced wellhead movement to the next level.  Intuitive user workflows and an accessible interface will enable well design engineers to predict wellhead movements for complex wellhead and mudline configurations.  Integrity of the conductor, surface casing, cement sheath and other well components may be considered proactively or from empirical observation to provide a fully up-to-date understanding of well integrity and its interaction with facilities and the environment.

Albert McSpadden

BY ENGINEERS

FOR ENGINEERS

Albert McSpadden

PRESIDENT
BOARD DIRECTOR

Richard Cooper

Richard Cooper

SENIOR ENGINEER

Rick Behenna

Rick Behenna

PRINCIPAL ENGINEER,
QA TESTER

Simon Glover

Simon Glover

VICE PRESIDENT - ASIA PACIFIC/OCEANIA
BOARD DIRECTOR

John Howard

John Howard

VICE PRESIDENT - SALES
BOARD DIRECTOR

Issa Kalil

Issa Kaili

VICE PRESIDENT - ENGINEERING

Ruggero Trevisan

Ruggero Trevisan

VICE PRESIDENT - EUROPE
BOARD DIRECTOR

Ian Coker

Ian Coker

FRONT-END DEVELOPER
BOARD DIRECTOR

OUR BOARD OF TECHNICAL ADVISORS:

Dr. Afif Halal

Dr. Afif Halal

Dr. Frans J. Klever

Dr. Frans J. Klever

Dr. Robert F. Mitchell

Dr. Robert F. Mitchell

WHAT OUR CLIENTS ARE SAYING:

"A strength of Perifor seems to be the user friendliness: we were able to get into the analysis within 1-2 days after never having used it"

"I know that ergonomic is not the right word for Perifor, but that's how it feels"

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