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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 1. Material properties and baseline modelparameters used in the numerical analysis.
| Parameter | Symbol | Value | Unit | Basis |
| Young’s modulus | E | 210 | GPa | AISI 4340 [13] |
| Thermal expansion coefficient | α | 1.13x10-5 | K-1 | AISI E4340, normalized at 870 °C (MatWeb) |
| Yield strength | σy | 860 | MPa | AISI E4340, normalized at 870°C (MatWeb) |
| Specific heat capacity | cp | 475 | J∙kg-1∙K-1 | Typical 4000-series steel |
| Thermal conductivity | k | 44.5 | W∙m-1∙K-1 | Typical steel |
| Baseline convection coefficient | h | 50 | W∙m-2∙K-1 | Baseline model assumption; sensitivity tested |
| Load-transfer parameter | λ | 0.50 | - | Baseline value; sensitivity tested |
| Rod temperature-response fraction | ϕ | 0.90 | - | Model criterion |
| Yield safety factor | SFy | 1.5 | - | Design assumption |
| Buckling safety factor | SFb | 1.5 | - | Design assumption |
| Effective-length factor | K | 1.0 | - | Pinned-pinned Euler model |
| Reservoir temperature change | ΔTR | 120 | K | Baseline operating condition |
| Rod temperature change | ΔTrod | 108 | K | ϕ ΔTR |