By Yuntao Song, Weiyue Wu, Shijun Du
Tokamak Engineering Mechanics deals concise and thorough assurance of engineering mechanics conception and alertness for tokamaks, and the fabric is bolstered by way of a number of examples. bankruptcy themes contain normal ideas, static mechanics, dynamic mechanics, thermal fluid mechanics and multiphysics structural mechanics of tokamak constitution research. The theoretical precept of the layout and the equipment of the research for numerous parts and cargo stipulations are provided, whereas the most recent engineering applied sciences also are brought. The publication will offer readers interested by the research of mechanical/fusion engineering with a common knowing of tokamak engineering mechanics.
Yuntao Song is Head of the Tokamak layout department on the Institute of Plasma Physics, chinese language educational of technological know-how (ASIPP), China.
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Additional resources for Tokamak Engineering Mechanics
The other type of power loss is local loss due to bends, transition sections, and valves, it is described as hj ¼ n v2 2g ð2:84Þ where hj is the local loss height m; n the loss coefficient, dimensionless; the following part is the dynamic pressure of the fluid, the same as the formula above. For viscous fluid, a dimensionless Reynolds number is defined to separate flow states into laminar and turbulent flow Re ¼ qvd l ð2:85Þ where q is the density of the fluid kg/m3; v the flow velocity m/s; d the character dimension of the flow channel m; andl the dynamic viscosity Pa s.
There are three basic theorems to solve electrical problems: • Gauss’s law of electric field: Electric flux density of the electric field at a point equals to the electric field strength. • Circuital law of electrostatic field: In any electrostatic field, the circulation along any circuit is zero. the current flowing out from the node is equal to the one which flows in. (2). Along the circuit, the sum of electromotive forces is zero. • Magnetic field: Current or moving charges generate magnetic field in their surroundings, and the magnetic field can exert a force to its surrounding current or moving charges.
1 Mechanics in Tokamak 35 The similarity principle is critical in order to set up an experiment facility; generally there are three principles, the geometry similarity, movement similarity, and dynamic similarity. The first one means the characteristic length of the model and the real case should be proportionable, like the diameter and length; the second asks for the same distribution of the fluid movement and scaled velocity; and the third means the force on the fluid particles has the same direction and proportionable magnitude.
Tokamak Engineering Mechanics by Yuntao Song, Weiyue Wu, Shijun Du