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F. C. Fonseca

Publications and source records attributed to F. C. Fonseca.

4 recordsLinked to original sources

Progress Report on Numerical Modeling of a Prototype Fuel Cell

Progress on the numerical modeling of a prototype fuel cell is reported. Some known limitations of the previously published Alpha model are addressed, and the numerical uncertainty due to discretization of the improved model, Beta, was estimated. In Part 1, the Beta model is compared to Alpha, where significant albeit small differences are seen. Shortcomings of the improved model are discussed, paving the way forward, while a discrepancy with previous results is addressed, further suggesting the use of the Darcy-Brinkman over Stokes-Darcy formulation for free and porous media flow. Furthermore, a parametric study is carried out, constraining plausible values of the reaction rate constants identifying additional opportunities for validation. In Part 2, a mesh convergence study is carried out to estimate the discretization error of Beta model. A reduced, proxy geometry and two extrapolation schemes are used to estimate the exact solution, which is then used to estimate the model's uncertainty through the Grid Convergence Index framework. Error estimates are on average $\sim 10\%$ for the flow rate range simulated, larger than experimental ones available. Results suggest a difficulty in achieving mesh convergence in fuel cell-like models, even in simpler cases. Caution is thus suggested during validation or when devising predictions from numerical models. Finally, given the uncertainties in the numerical data and the available experimental data, the results lack validation power, highlighting the need for additional experimental data and improved precision for the numerical data.

cs.CE

Magnetic dynamics of single domain Ni nanoparticles

The dynamic magnetic properties of Ni nanoparticles diluted in an amorphous SiO2 matrix prepared from a modified sol-gel method have been studied by the frequency f dependence of the ac magnetic susceptibility \c{hi}(T). For samples with similar average radii ~ 3-4 nm, an increase of the blocking temperature from TB ~ 20 to ~ 40 K was observed for Ni concentrations of ~ 1.5 and 5 wt.%, respectively, assigned to the effects of dipolar interactions. Both the in-phase \c{hi}'(T) and the out-of-phase \c{hi}"(T) maxima follow the predictions of the thermally activated Néel-Arrhenius model. The effective magnetic anisotropy constant Keff inferred from \c{hi}"(T) versus f data for the 1.5 wt.% Ni sample is close to the value of the magnetocrystalline anisotropy of bulk Ni, suggesting that surface effects are negligible in the present samples. In addition, the contribution from dipolar interactions to the total anisotropy energy Ea in specimens with 5 wt.% Ni was found to be comparable to the intrinsic magnetocrystalline anisotropy barrier.

cond-mat.mtrl-sci

Effect of Ir substitution in the ferromagnetic superconductor RuSr2GdCu2O8

A detailed study of the effect caused by the partial substitution of Ru by Ir on the magnetic and superconducting properties of the ruthenocuprate Ru(1-x)Ir(x)Sr2GdCu2o8; 0 <= x <= 0.10; is presented. The combined experimental results of structural, electrical, and magnetic measurements indicate that Ir substitutes Ru for x <= 0.10 with no significant structural distortions. Ir-doping gradually suppresses both the magnetic and the superconducting states. However, all samples were observed to attain the zero-resistance state at temperatures >= 2 K up to the highest applied magnetic field of 18 T. The resistive upper-critical field Hc2 as a function of temperature has been determined for these polycrystalline samples. Values of Hc2(0) were found to be \~ 52 T, and weakly dependent on the Ir concentration. We have also observed that the superconducting transition width decreases and the slope of the resistive transition increases with increasing Ir doping, a feature which is much more pronounced at high applied magnetic fields. The double-peak structure observed in the derivative of the resistive curves has been related to an inhomogeneous nature of the physical grains which is enhanced due to the Ru substitution by Ir. This indicates that the Josephson-junction-array (JJA) model seems to be appropriated to describe the superconducting state in these ruthenocuprates. The low temperature rho(T) data along with the determined vortex thermal activation energy are consistent with a 2D vortex dynamics in these materials.

cond-mat.supr-con

Current localization and Joule self-heating effects in Cr doped Nd0.5Ca0.5MnO3 manganites

The effects of dc excitation current on the current-voltage curves of polycrystalline samples of Nd0.5Ca0.5Mn0.96Cr0.04O3 were investigated. The experimental results show that an abrupt jump of the voltage is concomitant with a huge increase in the temperature of the sample. A simple model and estimates for Joule self-heating effects support the experimental data. Moreover, the data strongly suggest that both the current localization in the metallic paths and local Joule self-heating effects are essential ingredients to understand the current-induced phase transition in phase-separated manganites.

cond-mat.mtrl-sci