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DTA 210608

PetroSA hereby invites Suppliers to tender for the Provision of Subsea Controls System for the F-O Development aspect of our Project Jabulani. PetroSA is undertaking Project Jabulani which includes the possible development of the F-O gas field located approximately 100km off the Southern coast of the Western Cape of South Africa. This is a HPHT field, in water depth of 150 m, which will initially consist of 4 subsea wells producing to a central manifold. The field will be tied back 38.2 km to the F-A platform for processing and onward transmission of the produced hydrocarbons to the existing gas to liquids plant in Mossel Bay. The subsea system shall include an SSIV in the main F-O pipeline adjacent to the F-A Platform. Continuous MEG injection is planned to be via a 3” flowline piggybacked with the main production flowline from the platform to the subsea manifold. From the manifold, MEG is distributed to the wells via the infield umbilicals. The control system shall be a water based open loop design. The entire system shall be capable of future expansion to accommodate development of the F-S and F-X fields.


DTA 210608 - PetroSA hereby invites Suppliers to tender for the Provision of Subsea Controls System for the F-O Development aspect of our Project Jabulani. PetroSA is undertaking Project Jabulani which includes the possible development of the F-O gas field located approximately 100km off the Southern coast of the Western Cape of South Africa. This is a HPHT field, in water depth of 150 m, which will initially consist of 4 subsea wells producing to a central manifold. The field will be tied back 38.2 km to the F-A platform for processing and onward transmission of the produced hydrocarbons to the existing gas to liquids plant in Mossel Bay. The subsea system shall include an SSIV in the main F-O pipeline adjacent to the F-A Platform. Continuous MEG injection is planned to be via a 3” flowline piggybacked with the main production flowline from the platform to the subsea manifold. From the manifold, MEG is distributed to the wells via the infield umbilicals. The control system shall be a water based open loop design. The entire system shall be capable of future expansion to accommodate development of the F-S and F-X fields.
E4252
Researched by Tanya Nel
Created on 14 July 2009
Monitoring 0

Tender Details

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Site Inspection Details No Details.
Closing Date2009-10-01 12:00:00 AM
Document Collection The entire ITT document is available for download ...
Deposit Details: No Details.
Restrictions In the first instance, interested Suppliers must p...
CategoryElectrical & Instrument
Industry
RegionWestern Cape
Professionals Open Developer
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Open Developer
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