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- W1607202425 abstract "Sometimes the contact of a hot with a cold liquid can develop into a rapid thermal interaction in which a significant fraction of the thermal energy in the hot liquid is converted to mechanical work. Such events are called energetic thermal interactions or vapor explosions, and they have been known to man for centuries. However, the precise details of the underlying physical mechanisms remain unknown. Vapor explosions are of interest to the field of underwater vulcanism as well as to a number of industries (paper, metal, liquified natural gas, etc). However, perhaps its furthest reaching implications may be found in the nuclear power reactor industry. Here, one is concerned with the consequences of an accidental meltdown of the nuclear fuel and its interaction with the liquid coolant. The potential for an energetic fuel-coolant interaction must be assessed if adequate containment systems, which ensure that the risk to the health and safety of the public remain acceptably low, can be designed. Such assessments must include meltdown scenarios, as deduced from accident analysis considerations, and they must take into account the fundamentals of the interaction process itself. Certain aspects of these fundamentals are discussed. In particular the fragmentation aspects are examined asmore » they pertain to the propagation process.« less" @default.
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- W1607202425 date "1978-01-01" @default.
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- W1607202425 title "Fragmentation requirements for detonating vapor explosions" @default.
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