Data di Pubblicazione:
2011
Abstract:
This paper presents a proposal of Cooling Plant for two new Neutral Beam experiments called MITICA
and SPIDER to be realized in Padova (Italy). A large amount of Power (up to 70MW) has to be
removed from in-vessel components and auxiliary systems belonging to these two experiments. Different
experimental scenarios (pulse duration ranging from few seconds up to 3600 s), requirements for
operating temperature, coolant quality and voltage holding are taken into account in this conceptual
design proposal.
To reduce the radiological risks due to possible presence of activated corrosion products (ACP) in some
water cooled components suitable design choices have been analysed.
This work was carried out by considering carefully a lot of different aspects like operability, standardization
of components, maintenance and repair, optimization of the installed power and the overall costs
of the plant.
Experiment components with similar requirements are grouped in the same primary circuits where
fine temperature regulation, water quality monitoring and calorimetric measurements are the main characteristics.
Each primary circuit (PC) is connected to secondary circuits which allow thermal dissipation
and, in some cases, also component preheating. Secondary circuits are connected to two large basins the
water of which is cooled down by active cooling rejection system such as cooling towers and air coolers.
In this way the requirement for impulsive heat dissipation is fulfilled by the water basins allowing to
install a less powerful active rejection system and so reducing the total costs.
A large effort was done to guarantee good plant integration with the Experiment Main Hall (in which
MITICA and SPIDER are located) and other technical supplies, buildings and areas.
Other special requirements for stand-alone systems like Draining and Drying System, Pressure Test
System and Chemical Control System are also part of this work.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Cooling plant; Neutral beam injectors; ITER; Heat transfer systems; Drying system
Elenco autori:
Zaccaria, Pierluigi
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