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Parametric Optimization of Thermoelastic Energy Harvesting Systems under Low-Grade Thermal Cycling
Online Journal of Engineering Sciences
| Vol 5, Issue 1
Table 3. Key optimization and sensitivity results for thethermoelastic rod design.
| Result | Value |
| Maximum-power design, Dopt | 150.0 mm |
| Maximum-power design, Lopt | 3.888 m |
| Maximum average power at baseline λ =0.50 | 0.16624 W |
| Mass at maximum-power design | 539.3 kg |
| Distance-to-ideal compromise mass | 223.0 kg |
| Distance-to-ideal compromise power | 0.09231 W |
| Distance-to-ideal compromise diameter | 111.7 mm |
| Distance-to-ideal compromise length | 2.899 m |
| Refined system-level optimum λopt | 0.473 |
| Maximum power at λopt | 0.170454 W |
| Power penalty at λ=0.50 | 2.47% |
| Analytical Pareto scaling | Pavg ∝ m2/3 |
| Fitted scaling exponent | 0.66717 |
| Scaling-fit R2 | 0.999999 |
| Exponent error relative to 2/3 | 0.075% |
| Bimax at h=100 W∙m-2∙K-1 | 0.08272 |
| Pmax at h=10 W∙m-2∙K-1 | 0.03325 W |
| Pmax at h=100 W∙m-2∙K-1 | 0.33247 W |