📊 Grid Convergence Index (GCI) — ASME V&V 20
Quantify spatial discretization numerical uncertainty in CFD simulations across 3 grid levels (Roache 1998 & ASME V&V 20-2009 Standard). Computes apparent order $p$, Richardson extrapolation $\phi_{ext}$, and $GCI_{fine}$.
📝 Three-Grid Verification Setup
ASME V&V 20 Formulations:
$$r_{21} = \frac{h_2}{h_1}, \quad r_{32} = \frac{h_3}{h_2}, \quad \epsilon_{21} = \phi_2 - \phi_1$$ $$p = \frac{1}{\ln(r_{21})} \left| \ln\left|\frac{\epsilon_{32}}{\epsilon_{21}}\right| + q(p) \right|$$ $$\phi_{ext}^{21} = \frac{r_{21}^p \phi_1 - \phi_2}{r_{21}^p - 1}$$ $$GCI_{fine}^{21} = \frac{F_s \cdot e_a^{21}}{r_{21}^p - 1}$$
$$r_{21} = \frac{h_2}{h_1}, \quad r_{32} = \frac{h_3}{h_2}, \quad \epsilon_{21} = \phi_2 - \phi_1$$ $$p = \frac{1}{\ln(r_{21})} \left| \ln\left|\frac{\epsilon_{32}}{\epsilon_{21}}\right| + q(p) \right|$$ $$\phi_{ext}^{21} = \frac{r_{21}^p \phi_1 - \phi_2}{r_{21}^p - 1}$$ $$GCI_{fine}^{21} = \frac{F_s \cdot e_a^{21}}{r_{21}^p - 1}$$
📊 Verification Uncertainty Report
Verification Summary
Richardson Extrapolated Value ($\phi_{ext}^{21}$ at $h \to 0$)
0.276977
Fine Grid $GCI_{fine} = \mathbf{\pm 3.306\%}$ | Apparent Order $p = \mathbf{1.7}$
Asymptotic Range: EXCELLENT: Grid within asymptotic range (0.95 <= AR <= 1.05). (Ratio $AR = \mathbf{0.9777}$)
Apparent Order ($p$)1.7
Fine $GCI_{21}$3.31 %
Medium $GCI_{32}$6.02 %
Rel Error ($e_a$)2.28 %
Ratio $r_{21}$1.44
Ratio $r_{32}$1.41
📈 Solution Convergence vs Normalized Grid Spacing $h/h_1$
📋 Grid Convergence Analysis Breakdown
| Parameter | Value | Description |
|---|---|---|
| Convergence Type | Monotonic Convergence | Monotonic / Oscillatory behavior |
| Apparent Order ($p$) | 1.7 | ASME V&V 20 solution |
| Richardson Extrap ($\phi_{ext}$) | 0.276977 | Continuum solution at $h \to 0$ |
| Fine Grid GCI | 3.306 % | Numerical uncertainty on fine mesh |
| Medium Grid GCI | 6.024 % | Numerical uncertainty on medium mesh |
| Asymptotic Ratio ($AR$) | 0.9777 | Target $AR \approx 1.0$ |
Fortran Solver Raw Output:
=============================================================== THERMOFLUIDCALC — ASME V&V 20 GRID CONVERGENCE INDEX (GCI) =============================================================== Dimension = 3 Safety Factor Fs = 1.2500 Fine Size h1 = 4.054801E-03 Fine Solution phi1 = 2.845000E-01 Medium Size h2 = 5.848035E-03 Medium Solution phi2= 2.910000E-01 Coarse Size h3 = 8.220707E-03 Coarse Solution phi3= 3.020000E-01 --------------------------------------------------------------- Ratio r21 (h2/h1) = 1.4422 Ratio r32 (h3/h2) = 1.4057 Convergence Type = Monotonic Convergence Apparent Order p = 1.7004 Richardson Extrap = 2.769765E-01 Approx Error ea21 = 2.284710E-02 Approx Error ea21 % = 2.2847% Extrap Error e_ext = 2.716296E-02 Extrap Error e_ext %= 2.7163% GCI Fine (GCI_21) = 3.305581E-02 GCI Fine (GCI_21) % = 3.3056% GCI Medium (GCI_32) = 6.023842E-02 GCI Medium (GCI_32)%= 6.0238% Asymptotic Ratio AR = 0.9777 --------------------------------------------------------------- Asymptotic Check = EXCELLENT: Grid within asymptotic range (0.95 <= AR <= 1.05). =============================================================== --- GCI CONVERGENCE PROFILE --- Grid_Index h_norm phi_val GCI_pct 0 0.000000E+00 2.769765E-01 0.000000E+00 1 1.000000E+00 2.845000E-01 3.305581E+00 2 1.442250E+00 2.910000E-01 6.023842E+00 3 2.027401E+00 3.020000E-01 6.023842E+00 --- END GCI PROFILE ---