Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Philippe Cordelier is active.

Publication


Featured researches published by Philippe Cordelier.


Oil and gas facilities | 2015

Degradation (or Lack Thereof) and Drag Reduction of HPAM Solutions During Transport in Turbulent Flow in Pipelines

Stephane Jouenne; Jérôme Anfray; Philippe Cordelier; Khalid Mateen; David Levitt; Inès Souilem; Philippe Marchal; Cécile Lemaitre; Lionel Choplin; Jonathon Nesvik; Tom E. Waldman

Rules of thumb that are used in the industry for polymer-flooding projects tend to limit the distance over which hydrolyzed poly-acrylamide polymers can be transported in pipelines without under-going significant degradation. However, in sensitive environments, such as offshore facilities where footprint minimization is required, centralization of the polymer-hydration process and long-distance transport may be desirable. More-reliable rules are required to de-sign the pipe network and to estimate mechanical degradation of polymers during transport in turbulent conditions.In this work, we present evidence in the form of empirical large-scale pipeline experiments and theoretical development refuting the claim that polymer pipeline transport is limited by mechanical degradation. Our work concludes that mechanical degradation oc-curs at a critical velocity, which increases as a function of pipe di-ameter. Provided the critical velocity is not reached in a given pipe, there is no limit to the distance over which polymer solution can be transported. In addition, the drag reduction of viscous polymer solutions was measured as a function of pipe length, pipe diameter, fluid ve-locity, and polymer concentration. An envelope was defined to fix the minimum and maximum drag reductions expected for a given velocity in larger pipes. For pipes with diameters varying between 14 and 22 in. at a velocity greater than 1 m/s, the drag-reduction percentage is anticipated to be between 55 and 80%. A more- refined model was developed to predict drag reduction with less uncertainty. In conclusion, classical design rules applied for water transport (fluid velocity < 3 m/s) can be applied to the design of a polymer network. Therefore, for tertiary polymer projects, the existing water-injection network should be compatible with the mechanical requirements of polymer transportation. For secondary polymer projects, changing the rules of design by taking into account the high level of drag reduction should bring some economy to the pipe design and installation


Spe Journal | 2015

Modeling Techniques for Foam Flow in Porous Media

Kun Ma; Guangwei Ren; Khalid Mateen; Danielle Morel; Philippe Cordelier


Abu Dhabi International Petroleum Conference and Exhibition | 2012

(Alkali) Surfactant Gas injection : Attractive Laboratory Results under the Harsh Salinity and Temperature Conditions of Middle East Carbonates

Christophe Cottin; Danielle Morel; David Levitt; Philippe Cordelier; Gary A. Pope


SPE Improved Oil Recovery Symposium | 2014

Literature Review of Modeling Techniques for Foam Flow Through Porous Media

Kun Ma; Guangwei Ren; Khalid Mateen; Danielle Morel; Philippe Cordelier


SPE Improved Oil Recovery Conference | 2016

Designing and Injecting a Chemical Formulation for a Successful Off-Shore Chemical EOR Pilot in a High-Temperature, High-Salinity, Low-Permeability Carbonate Field

David Levitt; Alexandra Klimenko; Stephane Jouenne; Nicolas Passade-Boupat; Philippe Cordelier; Danielle Morel; Maurice Bourrel


Abu Dhabi International Petroleum Exhibition and Conference | 2015

The First Successful Chemical EOR Pilot in the UAE: One Spot Pilot in High Temperature, High Salinity Carbonate Reservoir

Omar Al-Amrie; Sophie Peltier; Adrian Pearce; Total Abu-Dhabi; Arafat Al-Yafei; Danielle Morel; Maurice Bourrel; Romain Bursaux; Philippe Cordelier; Stephane Jouenne; Hugo Juilla; Alexandra Klimenko; David Levitt; Michel Nguyen


SPE EOR Conference at Oil and Gas West Asia | 2014

Laboratory Investigation of Miscible CO2 WAG Injection Efficiency in Carbonate

Sebastien Duchenne; Gilles Puyou; Philippe Cordelier; Marcel Bourgeois; Gerald Hamon


SPE Annual Technical Conference and Exhibition | 2016

Specific Procedure for an Offshore Chemical EOR One Spot Pilot in a High Salinity High Temperature Environment

Danielle Morel; Omar Al-Amrie; Eric Delattre; Philippe Cordelier; Hugues Greder; Mayela Rivero; Carolina Romero; Romain Bursaux; Sophie Peltier; David Levitt


SPE Improved Oil Recovery Symposium | 2014

Micro-Scale Experiment and CFD Modeling of Viscoelastic Polymer; Trapped Oil Displacement and Deformation at the Dead-End

Ali Afsharpoor; Kun Ma; Aurelien Duboin; Khalid Mateen; Stephane Jouenne; Philippe Cordelier


SPE/PS-CIM/CHOA International Thermal Operations and Heavy Oil Symposium | 2005

Pore Level Investigation Of Heavy Oil Depressurisation

Katayoon Shahabinejad; Ali Danesh; Philippe Cordelier; Gerald Hamon

Collaboration


Dive into the Philippe Cordelier's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge