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Updated: Jun 24, 2025

Measurements of Local Instantaneous Convective Heat Transfer in a Pipe - Single and Two-phase Flow
Published on: April 30, 2018
Fast nondiffusive response of heat and turbulence pulse propagation
Naoki Kenmochi1,2, Katsumi Ida3,4, Tokihiko Tokuzawa3,4
1National Institute for Fusion Science, Toki, Gifu, 509-5292, Japan. kenmochi.naoki@nifs.ac.jp.
Abstract:
The experimental findings from the Large Helical Device have demonstrated a fast, nondiffusive behavior during the propagation of heat pulses, with an observed increase in speed with reduction in their temporal width. Concurrent propagation of the temperature gradient and turbulence, in a timeframe spanning from a few milliseconds to tens of milliseconds, aligned with the avalanche model. These results indicate that the more spatiotemporally localized the heat and turbulence pulses are, the greater the deviation of the plasma from its equilibrium state, coupled with faster propagation velocity. This insight is pivotal for future fusion reactors, which necessitate the maintenance of a steady-state, non-equilibrium condition.
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