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<title>Artikuluak</title>
<link>https://hdl.handle.net/20.500.11984/473</link>
<description/>
<pubDate>Thu, 17 Sep 2026 19:49:08 GMT</pubDate>
<dc:date>2026-09-17T19:49:08Z</dc:date>
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<title>On the mitigation of detrimental effects via passive flow-control devices in aerodynamic airfoils operating under turbulence and surface degradation effects</title>
<link>https://hdl.handle.net/20.500.11984/14660</link>
<description>On the mitigation of detrimental effects via passive flow-control devices in aerodynamic airfoils operating under turbulence and surface degradation effects
Zarketa-Astigarraga, Ander; Manzanares Bercial, Raúl; Martínez Cava, Alejandro; Martin-Mayor, Alain; Martinez Agirre, Manex; Penalba, Markel
This work investigates how moderate turbulence and surface roughness jointly affect the aerodynamics of a NACA0021&#13;
airfoil operating at transitional Reynolds numbers (Re = 0.8–1.2×105). Wind-tunnel tests were performed under two&#13;
controlled flow paradigms: a low-disturbance Clean condition and a Combined condition including both freestream&#13;
turbulence (I ≈3.8%) and leading-edge roughness. In addition to the baseline (Bare) configuration, two unilateral&#13;
passive-device layouts were tested, with triangular protrusions placed at x/c = 0.25 (PD25) and x/c = 0.5 (PD50).&#13;
Results show that the Combined inflow linearises the lift curve and softens stall but reduces lift slope and aerodynamic&#13;
efficiency by up to 60% compared with the Clean baseline. The effect of the passive devices depends on&#13;
their position and on Re: PD25 can delay stall and recover efficiency at high angles of attack, while PD50 offers only&#13;
limited or negative impact once the boundary layer becomes fully turbulent. Overall, the findings demonstrate that turbulence–&#13;
roughness interactions dominate aerodynamic behaviour at transitional scales, and that small passive elements&#13;
can provide only local improvements. These results underline the need to assess low-Re airfoils under realistic inflow&#13;
conditions when developing flow-control strategies for distributed or urban wind-energy systems.
</description>
<pubDate>Thu, 01 Jan 2026 00:00:00 GMT</pubDate>
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<dc:date>2026-01-01T00:00:00Z</dc:date>
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<title>Circularity Governance Under Strategic Incentives: A Stackelberg Model of Wind Turbine Blade Recycling</title>
<link>https://hdl.handle.net/20.500.11984/14659</link>
<description>Circularity Governance Under Strategic Incentives: A Stackelberg Model of Wind Turbine Blade Recycling
Nieto-Cerezo, Oscar; Fernandez Mendoza, Joan Manuel
Circular economy goals under the European Green Deal require business models that make recyclability financially attractive, yet this alignment becomes fragile when eco-design effort is hidden and secondary-market prices are volatile. This paper develops a formal model of the wind-turbine blade (WTB) value chain to examine when closed-loop systems can internalise eco-design incentives. In a Stackelberg game between a manufacturer and a recycler, we show that reintegrating recovered glass fibre reinforced polymer (GFRP) into new WTBs can endogenously reward eco-design by linking material recovery to cost savings. However, this self-alignment weakens under risk aversion and competitive leakage, when recyclers divert material to more profitable external markets. We derive a robustness-adjusted subsidy threshold that ensures closed-loop stability and quantify how it varies with eco-design leverage, price uncertainty and technology choice. Numerical results for pyrolysis and solvolysis highlight how technological maturity and market risk shape feasibility.
</description>
<pubDate>Thu, 01 Jan 2026 00:00:00 GMT</pubDate>
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<dc:date>2026-01-01T00:00:00Z</dc:date>
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<item>
<title>Ander Manterola Aldekoa: zeanuriztar etnografoari elkarrizketa</title>
<link>https://hdl.handle.net/20.500.11984/14655</link>
<description>Ander Manterola Aldekoa: zeanuriztar etnografoari elkarrizketa
Mentxakatorre Odriozola, Jon
</description>
<pubDate>Sun, 30 Nov 2025 00:00:00 GMT</pubDate>
<guid isPermaLink="false">https://hdl.handle.net/20.500.11984/14655</guid>
<dc:date>2025-11-30T00:00:00Z</dc:date>
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<item>
<title>Battery aging-aware adaptive model predictive control based on coupled semi-empirical electro-thermal and aging models</title>
<link>https://hdl.handle.net/20.500.11984/14654</link>
<description>Battery aging-aware adaptive model predictive control based on coupled semi-empirical electro-thermal and aging models
Dorronsoro, Xabier; de Castro, Ricardo; Barreras, Jorge Varela; GARAYALDE, ERIK; IRAOLA, UNAI
This paper presents an aging-rate aware nonlinear model predictive control (MPC) strategy for battery energy storage systems, integrating a semi-empirical, experimentally validated electro-thermal and degradation model to account for both calendar and cycle aging factors, often neglected in conventional energy management approaches. A key contribution is the introduction of a adaptive weighting method that dynamically adjusts the weights of the MPC cost function according to the battery’s aging state, primarily driven by time-dependent degradation factors. This adaptive mechanism improves control decisions across varying prediction horizons, leading to reductions in both battery degradation and total operating costs by up to 262.7 % and 44.51 %, respectively, when compared to a standard MPC.
</description>
<pubDate>Wed, 01 Jan 2025 00:00:00 GMT</pubDate>
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<dc:date>2025-01-01T00:00:00Z</dc:date>
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