|
Project Title |
Description |
Objectives |
Client |
|
|
Pyrenees FPSO
Project |
Internal Baffles Design for Gas Flotation Unit |
Validate design of internals for gas distribution and wave motion control |
Process Group
BHPBP |
|
|
Pyrenees FPSO
Project |
Internal Baffles Design for 1st Stage Separator |
Validate design of internals for wave motion induced sloshing control |
MODEC/TEC
BHPBP |
|
|
Pyrenees FPSO
Project |
Internal Baffles Design for 2nd Stage Separator |
Validate design of internals for wave motion induced sloshing control |
MODEC/TEC
BHPBP |
|
|
Pyrenees FPSO
Project |
Internal Baffles Design for 3rd Stage Separator |
Validate design of internals for wave motion induced sloshing control |
MODEC/TEC
BHPBP |
|
|
Pyrenees FPSO
Project |
Internal Baffles Design for Test Separator |
Validate design of internals for wave motion induced sloshing control |
MODEC/TEC
BHPBP |
|
|
Pyrenees FPSO
Project |
Internal Baffles Design for Electrostatic Coalescer |
Validate design of internals for wave motion induced sloshing control |
MODEC/TEC
BHPBP |
|
|
Azurite FDPSO
Project |
Internal Baffles Design for Inlet Separator |
Evaluate design of internals for wave motion induced slosh control |
Cameron
Petreco Process Systems |
|
|
Azurite FDPSO
Project |
Internal Baffles Design for LP Separator |
Evaluate design of internals for wave motion induced slosh control |
Cameron
Petreco Process Systems |
|
|
Azurite FDPSO
Project |
Internal Baffles Design for Electrostatic Coalescer |
Evaluate design of internals for wave motion induced slosh control |
Cameron
Petreco Process Systems |
|
|
FRADE FPSO
Project |
Design of Internals for Amine Flash Drum |
Evaluate design of internals for wave motion induced slosh control |
Cameron
Petreco Process Systems |
|
|
Nexus Crux Field Development II |
Erosion Study of Subsea Production Xmas Tree |
Estimate sand erosions of subsea gas condensate production tree with modified large bore size |
Cameron |
|
|
518 SWACO
Centrifuge |
Study of Flow Distribution and Separation Efficiency |
Quantification of the separation
of solid particles from drilling fluid |
M-I SWACO |
|
|
Nexus Crux Field Development |
Erosion Study of Subsea Production Xmas Tree |
Estimate sand erosions of subsea gas condensate production tree with standard bore size |
Cameron |
|
|
Proprietary Hydraulic Couplings |
Erosion Study of Hydraulic Couplings |
Study of sand erosion of a proprietary hydraulic couplings connected to a gas line |
Aker Kvaerner |
|
|
Stybarrow FPSO Project |
Internal Baffles Design for 1st Stage Separator |
Validate design for wave motion induced slosh control internals |
MODEC/TEC
BHPBP |
|
|
Stybarrow FPSO Project |
Internal Baffles Design for 2nd Stage Separator |
Validate design for wave motion induced slosh control internals |
MODEC/TEC
BHPBP |
|
|
Stybarrow FPSO Project |
Internal Baffles Design for Test Separator |
Validate design for wave motion induced slosh control internals |
MODEC/TEC
BHPBP |
|
|
Stybarrow FPSO Project |
Internal Baffles Design for Electrostatic Treater |
Validate design for wave motion induced slosh control internals |
MODEC/TEC
BHPBP |
|
|
GS-PaPa CHF Heater Project |
Improvement of Flue Gas Flow Distribution |
Design of internals for heating coils replacement of existing CHF Heaters |
Chevron Corp. |
|
|
AGBAMI FPSO Project |
Internal Baffles Design for Electrostatic Treater |
Validate design for wave motion induced slosh control internals |
Chevron Corp. |
|
|
AGBAMI FPSO Project |
Internal Baffles Design for Glycol Reboiler |
Validate design for wave motion induced slosh control internals |
Chevron Corp. |
|
|
AGBAMI FPSO Project |
Internal Baffles Design for Gas/Glycol Separation Tank |
Validate design for wave motion induced slosh control internals |
Chevron Corp. |
|
|
AGBAMI FPSO Project |
Internal Baffles Design for Glycol Contactor Tower |
Validate design for wave motion induced slosh control internals |
Chevron Corp. |
|
|
Chevron Lucula CHF Heaters II |
Internal Baffles Design of CHF Heaters |
Design of internals for retrofitting
of existing CHF Heaters |
Chevron Corp. |
|
|
CO2 Separation Membrane Module Expansion Project |
Internals Design of CO2 Membrane Modules for increased capabilities |
Optimize gas stream flow path inside
a CO2 membrane module |
Client Name Withheld |
|
|
Chevron Lucula CHF Heaters |
Internal Baffles Design of CHF Heaters |
Design of internals for new-build
CHF Heaters |
Chevron Corp. |
|
|
Condensate Pipeline |
Estimation of Solid Particles Deposition for Flow Assurance |
Conceptual design of BS&W control
for a condensate pipeline |
Client Name Withheld |
|
|
Z-9 Heater Treater |
Internal Design for Heater Treater |
Design emulsion inlet configuration and internal baffles to improve heater performance |
Client Name Withheld |
|
|
Rohm & Haas Reactor |
Retrofitting of a Hydrolysis Degassing Reactor |
Study fluid flow after implementing
the modified internals |
Rohm & Haas Company |
|
|
OXY Skim Tank II |
Internal Design for Skim Tank |
Design baffles for onshore skim tank. Performance evaluation under low operating liquid level |
Occidental of Oman, Inc. |
|
|
Dalia FPSO Project First Stage
Separator Phase II |
Internal Baffles Design for 6DS 3100A |
Identify forces on internals for FEA analysis |
Total
Technip |
|
|
Woodside’s Enfield Project Treater |
Internal Force for Offshore Electrostatic Treater |
Validate wave motion will not effect performance of electrostatic treater |
Woodside Energy, Ltd. |
|
|
OXY Skim Tank |
Internal Design for an 80 ft Produced Water Skim Tank |
Define oil/water separation behavior for and validate design for an 80-ft diameter produced water skim tank |
Occidental of Oman, Inc. |
|
|
Fazenda Alegre
Hot Wash Tank |
Internal Design for Hot Washing Tank TQ-365502 |
Define oil/water separation behavior for and validate design for a 50-ft diameter emulsion receiving tank |
ODEBRECHT
Petrobras |
|
|
Dalia FPSO Project First Stage Separator |
Internal Baffles Design for 6DS 3100A |
Validate design for wave motion induced slosh control internals |
Total
Technip |
|
|
Dalia FPSO Project Electrostatic Treater |
Internal Baffles Design for 6DS 3310A |
Validate design for wave motion induced slosh control internals |
Total
Technip |
|
|
ADMA OPCO Separator |
Upgrade ADMA Zakum West Separator |
Identify performance limitation of original design and predict improved performance of new internal design |
Technip
ADMA OPCO |
|
|
Membrane Module |
Casing Design for CO2 Separation Gas Membrane Modules |
Optimize gas flow path in the gas membrane module |
Client Name Withheld |
|
|
Hibernia Degasser |
Internals Design of D-4207 Produced Water Degasser |
Evaluate the design and performance of new-build horizontal produced water degasser vessel |
KBR (Canada) Company, Hibernia Management & Development Co. Ltd.
|
|
|
Petrobras FPSO |
Internal Baffle Design of Offshore Storage Chamber |
Demonstrated process performance under different sea states |
Petrobras |
|
|
CDU T-160 |
Internal Baffle Design of On-shore Holding Tank |
Illustrated process short-circuiting at simplified flow conditions |
Client Name Withheld |
|
|
Petrobras 135-D |
Internal Baffle Design of Produced Water Sparger |
2D simulations investigated possible flow short-circuiting |
Petrobras |
|
|
Su Tu Den FPSO |
Internal Baffle Design for MBD-2120 |
Process guarantee for vessel performance |
CONOCO Alliance/MODEC |
|
|
4-Tube Porta-Test Revolutions |
Designed Flow Rates Corroboration |
Demonstrated process performance
at increased flow rates |
Client Name Withheld |
|
|
CHF Heater II |
Prevention of Cold Spots Causing Internal Corrosion |
Modified inlet and baffles design
to improve gas flow distribution |
Client Name Withheld |
|
|
Thunder Horse Electrostatic Treater |
Internal Baffle Design for MBD-1270 |
Process guarantee for vessel performance |
Mustang Engineering Inc. BP |
|
|
Thunder Horse Degasser |
Internal Baffle Design for MBD-1260 |
Process guarantee for vessel performance |
Mustang Engineering Inc. BP |
|
|
Kuito Phase 2A FWKO Separator |
Internal Baffle Design for V-1301B |
Process guarantee for vessel performance on FPSO |
SBM-IMODCO Inc. |
|
|
Vertical Column IGF |
Single-Cell Flotation Column Process Design |
Renovated inlet and internal designs for improved process performance |
Client Name Withheld |
|
|
Perforated Plates II |
3D Perforated Plate Engineering Design |
Detailed 3D perforated plate design applied in multi-phase separators |
Client Name Withheld |
|
|
Flare Scrubber |
Flare Scrubber Retrofitting with Radial Vane Pack |
Retrofitting an existing flare scrubber to increase its throughput |
Shell U.S. |
|
|
Na Kika FWKO Separator |
Internal Baffle Design for NAM-140 |
Suppression of liquid sloshing inside
a FWKO separator on TLP Platform |
Shell International Exploration & Production |
|
|
Perforated Plates I |
2D Flow Distribution Demonstration |
Demonstration of the importance of addition of perforated plates inside a separator vessel |
Client Name Withheld |
|
|
Spreader Design |
Redesign Spreader for an Electrostatic Treater |
Increase throughput to handle more production |
BP |
|
|
Inlet Wedge |
2D Flow Distribution Verification |
Demonstration of the flow in an inlet manifold of multiple revolution tubes |
Client Name Withheld |
|
|
2-Tube Porta-Test Revolutions |
Debottlenecking of Vertical HP Separator |
3-D simulations demonstrated gas carry-under at increased gas flow rate. |
Shell U.S. |
|
|
CHF Heater I |
Troubleshooting of Firebox Shell Overheating Problem |
Solved firebox shell overheating problem. Simulation results were validated in later field test |
Client Name Withheld |
|