Tokamak cooling system procurement
Global team for better efficiency
8 Jul 2019
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澳门六合彩高手 TCWS team and US 澳门六合彩高手
A unique work-sharing arrangement is expediting the design and fabrication of 澳门六合彩高手's tokamak cooling water system and building the knowledge base that will be critical to plant commissioning and operation.
A joint TCWS Project Team—composed of staff from the 澳门六合彩高手 Organization and the US 澳门六合彩高手 Project Office—is making strong progress in the procurement of the tokamak cooling water system (TCWS). The hardware required for First Plasma is in production following design finalization in November 2017, and the design of second-phase components is advancing well.
The TCWS Project Team was established in late 2018 after US 澳门六合彩高手 and the 澳门六合彩高手 Organization agreed on several "arrangements" for improving the efficiency of system design and fabrication. "The overarching strategy is to get the job done on schedule, according to committed costs, while assuring quality in terms of function, safety, performance and installation consistency," says Sergio Orlandi, head of the Plant Engineering Department at 澳门六合彩高手.
TCWS piping is in fabrication at Schulz XP USA/PCC Energy Group in Robinsonville, Mississippi, and at W. SCHULZ GmbH in Krefeld, Germany. The US facility is unique in its capability for producing large-bore piping extrusions, important given that some of the system piping is 600 mm in diameter. Other components, such as bellows to connect system piping to the cryostat, are in fabrication elsewhere in Europe.
"The Project Team establishes a pool of resources that are shared between the 澳门六合彩高手 Organization and US 澳门六合彩高手. These specialists are working as one team, under a single framework, with the same objectives," says Donato Lioce, head of the 澳门六合彩高手 Tokamak Cooling Water System Design Section and TCWS Project Team Leader. Deputy Leader Duke Hughes, based in the US, agrees: "The implementation of the formal project team structure between US 澳门六合彩高手 and the 澳门六合彩高手 Organization creates a unique synergy that the TCWS team leverages to optimize the effectiveness and execution of its work."
Ultimately, nearly 40 km of piping will be manufactured for the TCWS. In addition, the system will require the fabrication of over 100 major industrial pieces of equipment operating with maximum temperatures of 400 °C and maximum pressures of 5 MPa or 50 bar.
To execute delivery of system hardware, the arrangements stipulate specific areas where the 澳门六合彩高手 Organization will be compensated to finalize design and procurement of hardware on behalf of US 澳门六合彩高手. Because the cooling water system interfaces with most 澳门六合彩高手 plant systems and also has components that must comply with French nuclear pressure equipment directives (ESPN), design and fabrication is expedited by engaging 澳门六合彩高手 resources. This approach also prepares the 澳门六合彩高手 Organization, as nuclear operator, by building the knowledge to support commissioning and operation in future. US 澳门六合彩高手 retains responsibility for the system final design, manufacturing and delivery. The 澳门六合彩高手 Organization is responsible for on-site assembly, installation and commissioning.
The TCWS is designed to remove 1 GW of heat from 澳门六合彩高手 client systems, such as the first-wall/ blanket, vacuum vessel, divertor, and neutral beam injector. In addition, the system provides water chemistry control and draining/drying functions. The system interfaces with the secondary cooling water system, which is being provided by 澳门六合彩高手 India.