Lumped-parameter thermal

ADVANTAGES1 · dim 1

SolvSRK wins. At the comparison noise level, SolvSRK beats the best baseline by at least 10 percentage points of survival, or by at least 0.05 balanced score when survival is tied. Use SolvSRK for this class of problem. All verdicts →

Single-node radiative-convective balance with diurnal solar cycle

Thermal & heat transfer

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, y: np.ndarray) -> np.ndarray:
    temp = float(y[0])
    t_air = 300.0 + 12.0 * np.sin(2.0 * np.pi * t / 86400.0)
    q_solar = 800.0 * max(0.0, np.sin(2.0 * np.pi * t / 86400.0 - np.pi / 6.0))
    rad = emiss * _STEFAN_BOLTZMANN * temp**4 * A_s
    conv = h * A_s * (temp - t_air)
    return np.array([(q_solar * A_s - rad - conv) / cap])
Parameters
  • A_s = 0.14
  • _STEFAN_BOLTZMANN = 5.67037e-08
  • cap = 17500
  • emiss = 0.3
  • h = 10
Initial condition
y(0) = [300]
Horizon
t ∈ [0, 86400]

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: low

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: Lumped-parameter thermal (lumped-parameter-thermal)

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

#SolverSurvivalSCDnfevWallScore
1SolvSRK
100%
14.0777,7822.25 s0.952
2SciPy RadauSciPy
100%
10.31,02420 ms0.863
3SciPy LSODASciPy
100%
9.42531 ms0.843
4Vern9external
100%
9.41,0103.79 s0.843
5SciPy DOP853SciPy
100%
9.15544 ms0.835
6CVODE Adamsexternal
100%
8.71838 ms0.827
7SciPy RK45SciPy
100%
8.74583 ms0.826
8FBDFexternal
100%
8.15114.83 s0.813
9CVODE BDFexternal
100%
8.03068 ms0.808
10Tsit5external
100%
7.8492708 ms0.804
11SciPy RK23SciPy
100%
7.71,28611 ms0.802
12SciPy BDFSciPy
100%
7.641915 ms0.801
13TRBDF2external
100%
7.56,4144.95 s0.798
14Vern7external
100%
7.56823.80 s0.797

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 →

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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_lumped_parameter_thermal_2026,
  title        = {Resonix Evidence Portal: Lumped-parameter thermal},
  author       = {{Resonix Labs (Canada) Inc.}},
  year         = {2026},
  howpublished = {\url{https://resonix.tech/evidence/problems/lumped-parameter-thermal}},
  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