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1

Quesnel, Thierry, Gilles Cholley, and Jean-Jacques Lehot. "La simulation en santé : méthodes et approches." Interbloc 38, no. 1 (January 2019): 22–24. http://dx.doi.org/10.1016/j.bloc.2019.01.002.

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2

Juillard, Michel, and Tarik Ocaktan. "Méthodes de simulation des modèles stochastiques d'équilibre général." Économie & prévision 183-184, no. 2 (2008): 115. http://dx.doi.org/10.3917/ecop.183.0115.

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3

Ocaktan, Tarik, and Michel Juillard. "Méthodes de simulation des modèles stochastiques d'équilibre général." Économie & prévision 183, no. 2 (2008): 115–26. http://dx.doi.org/10.3406/ecop.2008.7809.

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4

Imhoff, Evert Van, and Wendy Post. "Méthodes de micro-simulation pour des projections de population." Population (French Edition) 52, no. 4 (July 1997): 889. http://dx.doi.org/10.2307/1534618.

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5

Quéré, Raymond, Edouard Ngoya, Michel Gayral, Michel Prigent, and Jean Rousset. "Méthodes de simulation des circuits analogiques non linéaires microondes." Annales Des Télécommunications 45, no. 3-4 (March 1990): 113–26. http://dx.doi.org/10.1007/bf02995146.

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6

Hennion, Bernard. "Méthodes numériques utilisées dans le programme de simulation électrique ELDO." Annales des Télécommunications 41, no. 1-2 (January 1986): 24–30. http://dx.doi.org/10.1007/bf02998265.

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7

Kuss, François, and Frédéric Lebon. "Méthodes duales pour le contact frottant." European Journal of Computational Mechanics 16, no. 1 (January 2007): 33–51. http://dx.doi.org/10.3166/remn.16.33-51.

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8

Xueling Zhang, Xinbing Wang, Fujun Liu, and Yanzhao Lu. "Simulation of Microhollow Cathode Discharge With Planar and Hollow Anodes." IEEE Transactions on Plasma Science 37, no. 10 (October 2009): 2055–60. http://dx.doi.org/10.1109/tps.2009.2029108.

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9

Grandmont, Céline, and Yvon Maday. "Analyse et méthodes numériques pour la simulation de phénomènes d'interaction fluide-structure." ESAIM: Proceedings 3 (1998): 101–17. http://dx.doi.org/10.1051/proc:1998042.

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10

Pasquier, P., C. Dubost, P. Laitselart, S. Vico, L. Franck, C. Bay, T. Villevieille, and S. Mérat. "Utilisation des méthodes de simulation médicale dans l’enseignement du sauvetage au combat." Annales Françaises d'Anesthésie et de Réanimation 32 (September 2013): A164. http://dx.doi.org/10.1016/j.annfar.2013.07.318.

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11

Chen, Hsun-Yi, Hui-Chia Yu, J. Scott Cronin, James R. Wilson, Scott A. Barnett, and Katsuyo Thornton. "Simulation of coarsening in three-phase solid oxide fuel cell anodes." Journal of Power Sources 196, no. 3 (February 2011): 1333–37. http://dx.doi.org/10.1016/j.jpowsour.2010.08.010.

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12

Haffelin, A., J. Joos, A. Weber, and E. Ivers-Tiffee. "Three-Dimensional Performance Simulation of SOFC Anodes Using FIB-Tomography Reconstructions." ECS Transactions 57, no. 1 (October 6, 2013): 2563–72. http://dx.doi.org/10.1149/05701.2563ecst.

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13

Hajage, D., Y. De Rycke, and F. Tubach. "Les méthodes de prise en compte des scores pronostiques : une étude de simulation." Revue d'Épidémiologie et de Santé Publique 64 (May 2016): S132. http://dx.doi.org/10.1016/j.respe.2016.03.034.

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14

Valette, Rudy, Julien Bruchon, Hugues Digonnet, Patrice Laure, Mathilde Lebœuf, Luisa Silva, Bruno Vergnes, and Thierry Coupez. "Méthodes d'interaction fluide-structure pour la simulation multi-échelles des procédés de mélange." Mécanique & Industries 8, no. 3 (May 2007): 251–58. http://dx.doi.org/10.1051/meca:2007046.

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15

Caux, C., G. Fleury, M. Gourgand, and P. Kellert. "Couplage méthodes d'ordonnancement-simulation pour l'ordonnancement de systèmes industriels de traitement de surface." RAIRO - Operations Research 29, no. 4 (1995): 391–413. http://dx.doi.org/10.1051/ro/1995290403911.

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16

Xu, Jingxiang, Shandan Bai, Yuji Higuchi, Nobuki Ozawa, Kazuhisa Sato, Toshiyuki Hashida, and Momoji Kubo. "Multi-nanoparticle model simulations of the porosity effect on sintering processes in Ni/YSZ and Ni/ScSZ by the molecular dynamics method." Journal of Materials Chemistry A 3, no. 43 (2015): 21518–27. http://dx.doi.org/10.1039/c5ta05575j.

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The effects of the ceramic type and porosity on the sintering and degradation in Ni/YSZ and Ni/ScSZ anodes are unveiled by a recently developed multi-nanoparticle sintering simulation method based on molecular dynamics simulation.
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17

Rasmussen, P. F., B. Bobée, and J. Bernier. "Une méthodologie générale de comparaison de modèles d'estimation régionale de crue." Revue des sciences de l'eau 7, no. 1 (April 12, 2005): 23–41. http://dx.doi.org/10.7202/705187ar.

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L'estimation du débit QT de période de retour T en un site est généralement effectuée par ajustement d'une distribution statistique aux données de débit maximum annuel de ce site. Cependant, l'estimation en un site où l'on dispose de peu ou d'aucune données hydrologiques doit être effectuée par des méthodes régionales qui consistent à utiliser l'information existante en des sites hydrologiquement semblables au site cible. Cette procédure est effectuée en deux étapes: (a) détermination des sites hydrologiquemcnt semblables (b) estimation régionale Pour un découpage donné (étape a), nous proposons trois approches méthodologiques pour comparer les différentes méthodes d'estimation régionale. Ces approches sont décrites en détail dans ce travail. Plus particulièrement il s'agit de - simulation par la méthode du bootstrap - analyse de régression ou Bayes empirique - méthode bayésienne hiérarchique
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18

Delesalle, D., L. Desbat, and D. Trystram. "Résolution de grands systèmes linéaires creux par méthodes itératives parallèles." ESAIM: Mathematical Modelling and Numerical Analysis 27, no. 6 (1993): 651–71. http://dx.doi.org/10.1051/m2an/1993270606511.

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19

Hein, Simon, Julian Feinauer, Daniel Westhoff, Ingo Manke, Volker Schmidt, and Arnulf Latz. "Stochastic microstructure modeling and electrochemical simulation of lithium-ion cell anodes in 3D." Journal of Power Sources 336 (December 2016): 161–71. http://dx.doi.org/10.1016/j.jpowsour.2016.10.057.

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20

Nesterov, A., G. Paasch, S. Scheinert, and T. Lindner. "Simulation study of the influence of polymer modified anodes on organic LED performance." Synthetic Metals 130, no. 2 (September 2002): 165–75. http://dx.doi.org/10.1016/s0379-6779(02)00088-7.

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21

Yurkiv, Vitaliy, Annika Utz, André Weber, Ellen Ivers-Tiffée, Hans-Robert Volpp, and Wolfgang G. Bessler. "Elementary Kinetic Numerical Simulation of Electrochemical CO Oxidation on Ni/YSZ Pattern Anodes." ECS Transactions 35, no. 1 (December 16, 2019): 1743–51. http://dx.doi.org/10.1149/1.3570162.

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22

Fadaei, M., and R. Mohammadi. "A comprehensive simulation of gas concentration impedance for solid oxide fuel cell anodes." Energy Conversion and Management 106 (December 2015): 93–100. http://dx.doi.org/10.1016/j.enconman.2015.08.073.

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23

Sysoev, I. A., V. V. Kondrat’ev, T. I. Zimina, and A. I. Karlina. "Simulation of the Energy States of Electrolyzers with Roasted Anodes at Elevated Currents." Metallurgist 61, no. 11-12 (March 2018): 943–49. http://dx.doi.org/10.1007/s11015-018-0590-5.

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24

Schwöbel, S. D., V. Meinhold, T. Mehner, and T. Lampke. "Mathematical modeling and simulation of the dissolution of zinc anodes in industrial electroplating." IOP Conference Series: Materials Science and Engineering 1147, no. 1 (May 1, 2021): 012006. http://dx.doi.org/10.1088/1757-899x/1147/1/012006.

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25

Blaskovic, Hana, and Henri-Bertrand Lefer. "Les modèles de simulation technico-économiques comme méthodes d'analyse des impacts de différentes politiques agricoles." Économie rurale 222, no. 1 (1994): 6. http://dx.doi.org/10.3406/ecoru.1994.4913.

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26

Dal Maso, F., F. Benkemoun, and H. Toulhoat. "Possibilités actuelles du calcul des constantes élastiques de polymères par des méthodes de simulation atomistique." Revue de l'Institut Français du Pétrole 52, no. 6 (November 1997): 625–41. http://dx.doi.org/10.2516/ogst:1997063.

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27

Vincent, Stephane, Jean-Paul Caltagirone, Stephanie Delage, Delphine Lacanette, Pierre Lubin, and Tseheno Nirina Randrianarivelo. "Méthodes implicites de pénalisation sur des grilles d'Euler pour la simulation de écoulements multiphasés incompressibles." La Houille Blanche, no. 2 (March 2006): 53–59. http://dx.doi.org/10.1051/lhb:200602005.

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28

Guiu, Emeline, Jean Jacques Loiseau, Manuel Rodrigues, and Pierre Touboul. "Estimation des paramètres d'étalonnage de la mission spatiale MICROSCOPE. Validation par simulation des méthodes d'estimation." Journal Européen des Systèmes Automatisés 40, no. 1 (February 28, 2006): 139–54. http://dx.doi.org/10.3166/jesa.40.139-154.

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29

Buisson, Benoît, and Hady Senghor. "Méthodes de simulation des décès appliquées au régime de retraite de la fonction publique d’État." Retraite et société N° 73, no. 1 (2016): 175. http://dx.doi.org/10.3917/rs.073.0175.

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30

Wang, Ya Ping. "A Study on Thermal Spraying Sacrificial Anode Applied in Concrete Structure Cathodic Protection." Advanced Materials Research 1015 (August 2014): 215–18. http://dx.doi.org/10.4028/www.scientific.net/amr.1015.215.

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In this work, the thermal spraying sacrificial anode was investigated as reinforced concrete structure cathodic protection method. During our experiment, the performance of the thermal spraying sacrificial anode was studied using electrochemical method, metallographic microscopy method and simulation tests. And the results show that the thermal spraying sacrificial anodes are better than traditional sacrificial anodes. The method of thermal spraying applied in sacrificial anode field is successful, which solve the problem of insufficient driving initial potential of traditional sacrificial anode in the concrete structure.
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31

McNutt, Nicholas W., Orlando Rios, Mikhail Feygenson, Thomas E. Proffen, and David J. Keffer. "Structural analysis of lignin-derived carbon composite anodes." Journal of Applied Crystallography 47, no. 5 (September 4, 2014): 1577–84. http://dx.doi.org/10.1107/s1600576714014666.

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The development of novel lignin-based carbon composite anodes consisting of nanocrystalline and amorphous domains motivates the understanding of the relationship of the structural properties characterizing these materials, such as crystallite size, intracrystallitedspacing, crystalline volume fraction and composite density, with their pair distribution functions (PDFs), obtained from both molecular dynamics simulation and neutron scattering. A model for these composite materials is developed as a function of experimentally measurable parameters and realized in 15 composite systems, three of which directly match all parameters of their experimental counterparts. The accurate reproduction of the experimental PDFs using the model systems validates the model. The decomposition of the simulated PDFs provides an understanding of each feature in the PDF and allows for the development of a mapping between the defining characteristics of the PDF and the material properties of interest.
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32

Mamedov, N. V., N. N. Schitov, M. G. Lobok, and I. A. Kanshin. "The Penning Discharge Experimental Study and Its Simulation." PLASMA PHYSICS AND TECHNOLOGY 3, no. 3 (February 14, 2016): 158–62. http://dx.doi.org/10.14311/ppt.2016.3.158.

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The influence of the demountable Penning ion source electrodes geometry on the discharge characteristics and extracted ion current is investigated. The extracted currents, ignition potentials and the operational pressure ranges are compared at different anode heights and its arrangement relative to the discharge cell. The use of ring and mesh anodes has allowed to visualize the discharge burning areas and their structure versus the pressure, anode potential and cell geometry. Some PIC simulations of Penning discharge are made in the Vorpal code. The good correspondence between the simulated electron density and plasma glow areas on the photos is shown. The other one-particle simulation has shown that the magnetic field nonuniformity significantly affects the ignition and combustion discharge potentials.
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33

Miellou, Jean-Claude, and Pierre Spiteri. "Un critère de convergence pour des méthodes générales de point fixe." ESAIM: Mathematical Modelling and Numerical Analysis 19, no. 4 (1985): 645–69. http://dx.doi.org/10.1051/m2an/1985190406451.

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34

Huerta, Antonio, Sonia Fernández-Méndez, and Pedro Díez. "Enrichissement des interpolations d'éléments finis en utilisant des méthodes sans maillage." ESAIM: Mathematical Modelling and Numerical Analysis 36, no. 6 (November 2002): 1027–42. http://dx.doi.org/10.1051/m2an:2003004.

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35

Lemiale, Vincent, Jérôme Chambert, Abdelhamid Touache, and Philippe Picart. "Méthodes numériques de propagation de fissures appliquées au découpage des métaux." European Journal of Computational Mechanics 16, no. 6-7 (January 2007): 889–911. http://dx.doi.org/10.3166/remn.16.889-911.

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36

Alfaro, Iciar, Julien Yvonnet, Elias Cueto, Francesco Chinesta, Pierre Villon, and Manuel Doblaré. "Méthodes sans maillage de type elements naturels pour la simulation des procédés de mise en forme." European Journal of Computational Mechanics 15, no. 1-3 (January 2006): 29–40. http://dx.doi.org/10.3166/remn.15.29-40.

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37

Druesne, Frédéric, Bastien Lefèvre, Jean-Luc Dulong, and Pierre Villon. "Simulation d’un problème de contact par des méthodes de réduction de modèle pour une application temps réel." Mécanique & Industries 11, no. 3-4 (May 2010): 255–64. http://dx.doi.org/10.1051/meca/2010037.

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38

Ciceron, F., G. Besch, M. Benkhadra, Y. Gavand, J. A. Rouge, S. Pili-Floury, and E. Samain. "Comparaison de 2 méthodes de débriefing après simulation sur le score de compétence technique : étude DEBRIEF-SIM." Annales Françaises d'Anesthésie et de Réanimation 33 (September 2014): A200—A201. http://dx.doi.org/10.1016/j.annfar.2014.07.337.

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39

Cisneros, Sebastián, and Carlos Sánchez. "Kinetic Characterization and Molten KOH Fuel Cell Simulation for Dissolved Coal Oxidation on Nickel Anodes." Journal of The Electrochemical Society 161, no. 14 (2014): F1330—F1339. http://dx.doi.org/10.1149/2.1181412jes.

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40

Schluckner, C., V. Subotić, V. Lawlor, and C. Hochenauer. "CFD-simulation of effective carbon gasification strategies from high temperature SOFC Ni–YSZ cermet anodes." International Journal of Hydrogen Energy 42, no. 7 (February 2017): 4434–48. http://dx.doi.org/10.1016/j.ijhydene.2016.11.162.

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41

Wang, Hansen, Yangying Zhu, Sang Cheol Kim, Allen Pei, Yanbin Li, David T. Boyle, Hongxia Wang, et al. "Underpotential lithium plating on graphite anodes caused by temperature heterogeneity." Proceedings of the National Academy of Sciences 117, no. 47 (November 9, 2020): 29453–61. http://dx.doi.org/10.1073/pnas.2009221117.

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Rechargeability and operational safety of commercial lithium (Li)-ion batteries demand further improvement. Plating of metallic Li on graphite anodes is a critical reason for Li-ion battery capacity decay and short circuit. It is generally believed that Li plating is caused by the slow kinetics of graphite intercalation, but in this paper, we demonstrate that thermodynamics also serves a crucial role. We show that a nonuniform temperature distribution within the battery can make local plating of Li above 0 V vs. Li0/Li+(room temperature) thermodynamically favorable. This phenomenon is caused by temperature-dependent shifts of the equilibrium potential of Li0/Li+. Supported by simulation results, we confirm the likelihood of this failure mechanism during commercial Li-ion battery operation, including both slow and fast charging conditions. This work furthers the understanding of nonuniform Li plating and will inspire future studies to prolong the cycling lifetime of Li-ion batteries.
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42

Sambou, S. "Comparaison par simulation de Monte-Carlo des propriétés de deux estimateurs du paramètre d'échelle de la loi exponentielle : méthode du maximum de vraisemblance (MV) et méthode des moindres carrés (MC)." Revue des sciences de l'eau 17, no. 1 (April 12, 2005): 23–47. http://dx.doi.org/10.7202/705521ar.

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La loi exponentielle est très répandue en hydrologie : elle est faiblement paramétrée, de mise en œuvre aisée. Deux méthodes sont fréquemment utilisées pour estimer son paramètre : la méthode du maximum de vraisemblance et la méthode des moments, qui fournissent la même estimation. A côté de ces deux méthodes, il y a celle des moindres carrés qui est très rarement utilisée pour cette loi. Dans cet article, nous comparons le comportement asymptotique de l'estimateur de la méthode des moindres carrés avec celui de la méthode du maximum de vraisemblance en partant d'une loi exponentielle à un seul paramètre a connu, puis en généralisant les résultats obtenus à partir de la dérivation des expressions analytiques. L'échantillon historique disponible en pratique étant unique, et de longueur généralement courte par rapport à l'information que l'on désire en tirer, l'étude des propriétés statistiques des estimateurs ne pourra se faire qu'à partir d'échantillons de variables aléatoires représentant des réalisations virtuelles du phénomène hydrologique concerné obtenus par simulations de Monte Carlo. L'étude par simulation de Monte Carlo montre que pour de faibles échantillons, l'espérance mathématique des deux estimateurs tend vers le paramètre réel, et que la variance de l'estimateur des moindres carrés est supérieure à celle de l'estimateur du maximum de vraisemblance.
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43

Lepage, B., D. Dedieu, N. Sav, and T. Lang. "Comparaison de quatre méthodes d’estimation d’un effet direct et exploration de l’importance des biais potentiels : étude par simulation." Revue d'Épidémiologie et de Santé Publique 59 (April 2011): S17. http://dx.doi.org/10.1016/j.respe.2011.02.097.

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44

Kraft, Ludwig, Jan B. Habedank, Alexander Frank, Alexander Rheinfeld, and Andreas Jossen. "Modeling and Simulation of Pore Morphology Modifications using Laser-Structured Graphite Anodes in Lithium-Ion Batteries." Journal of The Electrochemical Society 167, no. 1 (September 23, 2019): 013506. http://dx.doi.org/10.1149/2.0062001jes.

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45

Hu, An Kang, Yu Guo, Wei Wang, and Wei Jiang. "Numerical Simulation of Cathodic Protection for Jack-Up Platform." Advanced Materials Research 813 (September 2013): 24–29. http://dx.doi.org/10.4028/www.scientific.net/amr.813.24.

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For the jack-up platforms' huge size and complex structure, as well as the variation and complexity of their ambient corrosion environment, problems often arise in cathodic protection (CP) systems. The rise of the computer and the numerical simulation technology provide a new technical method to the prediction, evaluation and optimization of CP system for jack-up platform. Numerical simulation method has the advantage of examining potential maps of the entire structure easily and then the designer can determine the number and placement of anodes required to provide protection from the under and over protection regions based on a generic polarization response. In this paper the 3-D boundary element method was used to calculate the mathematical model of sacrificial anode CP system for a jack-up platform. Introduced piecewise quasi linearized method to deal with nonlinear problem of boundary conditions. Adopt block boundary element method to solve electrolyte inconsistency problem and points regional modeling to solve electrolyte discontinuous. From the results we can conclude that the jack-up platform sacrificial anode CP system meets the protection targets.
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46

Sarhadi, Ali, Asger Bech Abrahamsen, and Mathias Stolpe. "Optimal Design of Galvanic Corrosion Protection Systems for Offshore Wind Turbine Support Structures." Corrosion 74, no. 7 (March 14, 2018): 829–41. http://dx.doi.org/10.5006/2688.

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The current work addresses a mass/cost-optimization procedure for galvanic anode cathodic protection systems based on both cathodic protection (CP) standards and numerical simulation. An approach is developed for optimizing the number and dimensions of the galvanic anodes, distributing the optimized anodes on the support structure, and finally evaluating the protective potential on the structure during the lifetime by using finite element (FE) software. An algorithm based on sequential quadratic programming is used for optimizing the number and dimensions of the anodes. Both simplified and detailed models are suggested for calculating the protective potential on the structure. The simplified model is selected based on its advantages in terms of calculation time and compatibility with DNV standard data. A time-dependent FE model is used to take into account the electrical isolation degradation of the structure coating as well as the mass reduction of the anodes during the CP lifetime. The performance of the proposed optimization process is examined on a mono bucket inspired (with some simplifications) by the Dogger Bank metrological mast in England. The optimized designs for different coating and anode types are compared and the best designs in terms of both cost and protective potential during the lifetime are suggested. The achieved results show that the proposed optimization procedure can reduce the cost of the CP system around 70% compared to the original non-optimized CP design of the Dogger Bank metrological mast. Furthermore, evaluating the time-evolution performance of the CP systems can reduce their lifetime uncertainty.
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47

Panepinto, Adriano, and Rony Snyders. "Recent Advances in the Development of Nano-Sculpted Films by Magnetron Sputtering for Energy-Related Applications." Nanomaterials 10, no. 10 (October 15, 2020): 2039. http://dx.doi.org/10.3390/nano10102039.

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In this paper, we overview the recent progress we made in the magnetron sputtering-based developments of nano-sculpted thin films intended for energy-related applications such as energy conversion. This paper summarizes our recent experimental work often supported by simulation and theoretical results. Specifically, the development of a new generation of nano-sculpted photo-anodes based on TiO2 for application in dye-sensitized solar cells is discussed.
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48

Methekar, Ravi N., Paul W. C. Northrop, Kejia Chen, Richard D. Braatz, and Venkat R. Subramanian. "Kinetic Monte Carlo Simulation of Surface Heterogeneity in Graphite Anodes for Lithium-Ion Batteries: Passive Layer Formation." Journal of The Electrochemical Society 158, no. 4 (2011): A363. http://dx.doi.org/10.1149/1.3548526.

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49

Habedank, Jan B., Ludwig Kraft, Alexander Rheinfeld, Christina Krezdorn, Andreas Jossen, and Michael F. Zaeh. "Increasing the Discharge Rate Capability of Lithium-Ion Cells with Laser-Structured Graphite Anodes: Modeling and Simulation." Journal of The Electrochemical Society 165, no. 7 (2018): A1563—A1573. http://dx.doi.org/10.1149/2.1181807jes.

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50

Xiaolong Huang, Lijun Wang, Shenli Jia, Zhonghao Qian, Jie Deng, and Zongqian Shi. "Numerical Simulation of Thermal Characteristics of Anodes by Pure Metal and CuCr Alloy Material in Vacuum Arc." IEEE Transactions on Plasma Science 43, no. 8 (August 2015): 2283–93. http://dx.doi.org/10.1109/tps.2015.2443811.

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