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The AP1000 Probabilistic Risk Assessment, assumes in the standard design that in the event of direct vessel injection line break (DVILB) the RNS cannot inject efficiently, and therefore it is necessary to depressurize the Reactor Coolant System until atmospheric conditions in order to allow injection through the IRWST and to achieve safe conditions.
A 1400 MW pressurized-water reactor has adopted a special direct vessel injection (DVI) structure for the emergency core cooling system.
The KNGR is an advanced light water reactor (ALWR) adopting the advanced design feature of a direct vessel injection (DVI) configuration and passive fluidic device in the discharge line of the safety injection tank (SIT).
As one of the advanced design features of the APR1400 (Advanced Power Reactor), a direct vessel injection (DVI) system is adopted instead of the conventional cold leg injection (CLI) system.
Recently constructed and proposed nuclear power plants have increasingly adopted the direct vessel injection (DVI) type emergency core cooling system (ECCS) instead of the conventional cold leg injection (CLI) type one.
APR1400 adopts the direct vessel injection (DVI) method for more effective core penetration of the emergency core cooling (ECC) water than the cold leg injection (CLI) method in the OPR1000 (Optimized Power Reactor 1000 MWe).
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When injecting in the area of the mentioned vessels, injections should be directly in contact with bone; if obstruction of the needle occurs, it should be removed, cleared, and then replaced at the preperiosteal level.
Two comparison test groups a 2-inch cold leg break and a double-ended direct-vessel-injection (DEDVI) line break were conducted.
1-inch, 2-inch and 8-inch cold leg breaks and a double-ended direct-vessel-injection (DEDVI) line break were selected as the critical and essential SBLOCA tests.
It deliveries the necessary gas species from tritium plant to vacuum vessel, pellet injection system or neutral beam for plasma operation and fusion power shutdown.
This study intends to demonstrate a direct vessel inclined injection (DVII) method, one of various ideas with which to maximize the ECC core penetration and to minimize the direct bypass through the break during the reflood phase of a LBLOCA.
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