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- Main Page : [[Validation and test cases#1-D test cases|1D Cases]], [[Validation and test cases#2-D test cases|2D Case '''[[CFD-Wiki:1 August 2006|1 August 2006]]''': Monthly focus area August 2006: Validation and test cases.6 KB (823 words) - 21:52, 9 December 2017
- Navier-Stokes equations The instantaneous continuity equation (1), momentum equation (2) and energy equation (3) for a compressible fluid ca </td><td width="5%">(1)</td></tr>29 KB (4,606 words) - 18:17, 28 August 2012
- Fluent FAQ ...e tutorials given at [http://www.studentfluent.com/ studentfluent], or you may be able to register to use the user services center through other channels ...f function f(x), f'(x(N))=0 then formula for calculating next iterate x(N+1) = x(N) - f(x(N))/f'(x(N)) requires division by f'(x(N)) which is zero. Her39 KB (6,386 words) - 16:48, 26 April 2013
- Spalart-Allmaras model ...port equation for a viscosity-like variable <math>\tilde{\nu}</math>. This may be referred to as the Spalart-Allmaras variable. ...nu}}{\partial x_j} & = & C_{b1} [1 - f_{t2}] \tilde{S} \tilde{\nu} + \frac{1}{\sigma} \{ \nabla \cdot [(\nu + \tilde{\nu}) \nabla \tilde{\nu}] + C_{b2}4 KB (662 words) - 13:34, 23 April 2015
- Tridiagonal matrix algorithm - TDMA (Thomas algorithm) ... used to solve ''tridiagonal'' systems of equations. A tridiagonal system may be written as a_i x_{i - 1} + b_i x_i + c_i x_{i + 1} = d_i,4 KB (658 words) - 22:58, 14 September 2016
- Code: 3D Lid-driven cavity using pressure-free velocity form :<math>\rho^{-1}\nabla p=\Pi^I(-\mathbf{v}\cdot\nabla\mathbf{v}+\nu\nabla^2\mathbf{v})+\mat ...enoidal and irrotational projection operators satisfying <math>\Pi^S+\Pi^I=1</math> and24 KB (3,584 words) - 14:08, 10 August 2011