Title :
A new fully implicit finite-difference algorithm for simulation of nonlinear electron heat conduction in high-temperature plasmas including Bremsstrahlung emission
Author :
Habibi, Mehdi ; Oloumi, Mohsen ; Khani, Hasan Hossein ; Magidi, Saeid ; Pouraram, Fatemeh
Author_Institution :
Plasma & Nucl. Fusion Res. Sch., Nucl. Sci. & Technol. Res. Inst., Tehran, Iran
Abstract :
Summary form only given. Numerical solutions of the one-dimensional nonlinear electron heat conduction equation are presented in this paper. The most common way of energy transport in high-temperature plasmas is electron thermal conduction. The heat transfer mechanism in such plasmas is strongly nonlinear because of the dependence of the heat conduction coefficient on temperature. An efficient and accurate solution of the transport equation is still one of the computational challenges. The numerical solution of the nonlinear electron heat conduction equation, including Bremsstrahlung emission, is obtained by employing the second-order accurate Crank-Nicholson differencing scheme in combination with the Newton-Raphson method. Furthermore, the accuracy and conservation tests of this fully implicit algorithm are presented.
Keywords :
Newton-Raphson method; bremsstrahlung; finite difference methods; heat conduction; plasma nonlinear processes; plasma simulation; plasma transport processes; Newton-Raphson method; bremsstrahlung emission; energy transport; fully implicit finite-difference algorithm; heat transfer mechanism; high-temperature plasmas; nonlinear electron heat conduction simulation; one-dimensional nonlinear electron heat conduction equation; second-order accurate Crank-Nicholson differencing scheme; Finite difference methods; Heat transfer; Heating; Mathematical model; Numerical models; Plasma temperature;
Conference_Titel :
Plasma Sciences (ICOPS), 2015 IEEE International Conference on
Conference_Location :
Antalya
DOI :
10.1109/PLASMA.2015.7179548