RES - DT - FUSION 13 / Introduction to a Novel Magnetic Heat Transfer System
Автор: RES Institute
Загружено: 2024-10-11
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Chapter 13: Introduction to a Novel Magnetic Heat Transfer System, https://studio.youtube.com/video/KDs5...
The inner core of the tubular plasma volume (20) has a temperature ranging from 100 to 400 million degrees Celsius. How can this heat be transferred to the water circulating between the inner and outer shells (23 and 24) of the plasma container? The double-shell steel plasma vessel acts as a heat transfer device, absorbing heat from the plasma. It is equipped with eight magnetic coils, each of which has a multitude of magnetic poles (P1-Pn) that lie opposite each other on the inner shell. These coils' magnetic poles (P1-Pn) can be operated by either alternating current (AC) or direct current (DC). Sophisticated magnetic operation enables temporary contact between the electrically conductive tubular plasma volume (20) and the inner shell (23) of the plasma vessel (20). This facilitates heat transfer to the "blanket" via thermal conduction. The "blanket" is a layer on the inner shell of the plasma vessel that faces the plasma. Charged particles (+, −) respond collectively to the attraction or repulsion exerted by opposite magnetic coil poles (P₁–Pn). This influences the trajectory of the magnetic field lines. In a coordinated motion, the tubular plasma volume briefly touches the inner shell (23) of the plasma vessel (20), allowing heat to transfer by conduction.
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