Flash-heat transient
PARITYS2 · dim 50No clear winner. The survival gap is under 10 percentage points and the balanced-score gap is under 0.05, so neither SolvSRK nor the best baseline clears the win threshold. Either works - choose on cost, licensing, or integration effort. All verdicts →
Short-pulse heat deposition in thin film; rapid thermal transient
Problem definition
Canonical benchmark implementation
Canonical RHS excerpt from the registered callable used for this benchmark cell. Expand it to verify the state equations; it is not a standalone runnable fixture.
Show canonical RHS excerpt
def rhs(t: float, temp: np.ndarray) -> np.ndarray:
d = np.zeros(n_nodes)
for i in range(n_nodes):
t_left = 300.0 if i == 0 else temp[i - 1]
t_right = 300.0 if i == n_nodes - 1 else temp[i + 1]
d[i] = alpha * (t_left - 2.0 * temp[i] + t_right) / dx2
return d- Parameters
- alpha = 3e-07
- dx2 = 3.84468e-10
- n_nodes = 50
- Initial condition
- y(0) = [310, 300, 300, 300, 300, 300, …] [shape=(50,), min=300, max=310]
- Horizon
- t ∈ [0, 2]
Canonical RHS excerpt captured from the same registered callable used for the published benchmark. Frozen closure values are summarized below; helper imports and solver settings are intentionally omitted.
Fingerprint
Spread: high
Default noise: none
Recommendation snapshot
Clean best: SolvSRK
Noisy best: SolvSRK
Coverage
14 solver arms · clean + 5 noise levels
Ranked on survival, precision, and speed
Versions & freeze
Methodology →- Freeze
- 2026-08-13
- libsolvsrk
- 2.3.0
- SciPy
- 1.14
- SUNDIALS
- CVODE (bundled backend)
20 seeds/cell default · 14 arms · TRL 4–5 · simulation-lab validated · this page: Flash-heat transient (flash-heat-transient)
Governed SolvTune benchmark freeze; per-arm medians only. RHS definitions and raw trial rows are not published.
Self-reported by Resonix Labs · not independently verified
Results matrix
Pick an objective and a noise level to rank all arms on survival, median SCD, median nfev, and median wall time. Medians across seeds.
Objective
Best overall trade-off of survival, precision, and speed.
Noise level
| # | Solver | Survival | SCD | nfev | Wall | Score |
|---|---|---|---|---|---|---|
| 1 | SolvSRK | 100% | 12.0 | 1,401 | 47 ms | 0.904 |
| 2 | SciPy RadauSciPy | 100% | 10.1 | 604 | 16 ms | 0.860 |
| 3 | SciPy DOP853SciPy | 100% | 9.8 | 11,834 | 313 ms | 0.853 |
| 4 | CVODE BDFexternal | 100% | 8.9 | 410 | 18 ms | 0.832 |
| 5 | CVODE Adamsexternal | 100% | 8.6 | 731 | 28 ms | 0.825 |
| 6 | SciPy RK45SciPy | 100% | 8.6 | 13,286 | 211 ms | 0.824 |
| 7 | SciPy BDFSciPy | 100% | 8.5 | 379 | 19 ms | 0.822 |
| 8 | SciPy LSODASciPy | 100% | 8.5 | 1,172 | 17 ms | 0.822 |
| 9 | Tsit5external | 100% | 8.1 | 13,644 | 2.07 s | 0.812 |
| 10 | SciPy RK23SciPy | 100% | 7.8 | 7,661 | 223 ms | 0.804 |
At Clean, best balanced arm is SolvSRK.
Values are medians across seeds, measured by Resonix Labs on Resonix hardware and not independently verified; nfev and wall are on reference lab hardware (indicative). Under injected noise only SolvSRK and the SciPy arms are run. How we measure accuracy → · Verification status →
Cite this page
Replace the access date. Pin the freeze ID and library versions when comparing against a later export. Cite it as what it is - a self-reported vendor benchmark, not an independently verified result. The note field says so; please keep it.
@misc{resonix_evidence_flash_heat_transient_2026,
title = {Resonix Evidence Portal: Flash-heat transient},
author = {{Resonix Labs (Canada) Inc.}},
year = {2026},
howpublished = {\url{https://resonixusa.com/evidence/problems/flash-heat-transient}},
note = {Self-reported vendor benchmark; internally generated by Resonix Labs and not independently verified. Accessed YYYY-MM-DD. Freeze 2026-08-13; libsolvsrk 2.3.0; SciPy 1.14.}
}Related
TRL 4–5 · simulation-lab validated · 398 problems · 14 solver arms · clean + 5 noise levels
Freeze: 2026-08-13 · scipy 1.14 · libsolvsrk 2.3.0 · Methodology
Self-reported by Resonix Labs · not independently verified · Verification status