Cite

González-Fernández, C.F. (2001),Heat transfer and the network simulation method. J. Horno (Ed.), Research Signpost, Trivandrum, India, p. 30.González-FernándezC.F.2001Heat transfer and the network simulation methodHornoJ.Research SignpostTrivandrum, India30Search in Google Scholar

Alarcón, M. (2001). Transporte de calor en sistemas con aletas. Coeficientes de rendimiento y red de transferencia. Física Aplicada. Universidad Politécnica de Cartagena.AlarcónM.2001Transporte de calor en sistemas con aletasCoeficientes de rendimiento y red de transferencia. Física AplicadaUniversidad Politécnica de CartagenaSearch in Google Scholar

Zueco, J. (2003). Solución de problemas inversos en conducción de calor mediante el método de simulación por redes. Física Aplicada. Universidad Politécnica de CartagenaZuecoJ.2003Solución de problemas inversos en conducción de calor mediante el método de simulación por redesFísica AplicadaUniversidad Politécnica de CartagenaSearch in Google Scholar

Castro, E. (2005). Simulación de ondas elásticas en vigas mediante el método de redes y detección de dañ o mediante la transformada wavelet. Física, Universidad de Jaén.CastroE.2005Simulación de ondas elásticas en vigas mediante el método de redes y detección de dañ o mediante la transformada waveletFísicaUniversidad de JaénSearch in Google Scholar

Soto, A. (2007). Simulación numérica de procesos de intrusión salina en acuíferos mediante el método de simulación por redes. Física Aplicada. Universidad Politécnica de Cartagena.SotoA.2007Simulación numérica de procesos de intrusión salina en acuíferos mediante el método de simulación por redesFísica AplicadaUniversidad Politécnica de CartagenaSearch in Google Scholar

del Cerro, F. (2009). Desarrollo de un programa de conducción de calor, usando analogía eléctrica, mediante el lenguaje C y el módulo de cálculo Pspice. Aplicaciones lineales y no lineales en diferentes geometrías. Universidad de Murcia.del CerroF.2009Desarrollo de un programa de conducción de calor, usando analogía eléctrica, mediante el lenguaje C y el módulo de cálculo PspiceAplicaciones lineales y no lineales en diferentes geometríasUniversidad de MurciaSearch in Google Scholar

Luna, J.P. (2010). Caracterización, optimización y diseño de algunos tipos de aletas a través del concepto de admitancia térmica inversa relativa. Física Aplicada. Universidad Politécnica de Cartagena.LunaJ.P.2010Caracterización, optimización y diseño de algunos tipos de aletas a través del concepto de admitancia térmica inversa relativaFísica AplicadaUniversidad Politécnica de CartagenaSearch in Google Scholar

Alhama, F., López-Sánchez, J.F. et al. (1997). Heat conduction through a multilayered wall with variable boundary conditions. Energy 22(8): 797-803. 10.1016/S0360-5442(97)00003-0AlhamaF.López-SánchezJ.F1997Heat conduction through a multilayered wall with variable boundary conditions. Energy22879780310.1016/S0360-5442(97)00003-0Open DOISearch in Google Scholar

González-Fernández, C.F., Alhama, F. et al. (1998). Application of the network method to heat conduction processes with polynomial and potential-exponentially varying thermal properties. Numerical Heat Transfer Part A–Applications 33(5): 549-559. 10.1080/10407789808913954González-FernándezC.F.AlhamaF.1998Application of the network method to heat conduction processes with polynomial and potential-exponentially varying thermal propertiesNumerical Heat Transfer Part A–Applications33554955910.1080/10407789808913954Open DOISearch in Google Scholar

Alarcón, M., Alhama, F. et al. (2002). Transient conduction in a fin-wall assembly with harmonic excitation -network thermal admittance. Heat Transfer Engineering 23(2): 31-43. 10.1080/01457630252800412AlarcónM.AlhamaF.2002Transient conduction in a fin-wall assembly with harmonic excitation -network thermal admittanceHeat Transfer Engineering232314310.1080/01457630252800412Open DOISearch in Google Scholar

del Cerro, F., Gómez-Lopera, S.A. et al. (2008). A powerful and versatile educational software to simulate transient heat transfer processes in simple fins. Computer Applications in Engineering Education 16(1): 72-82.10.1002/cae.20159del CerroF.Gómez-LoperaS.A.2008A powerful and versatile educational software to simulate transient heat transfer processes in simple finsComputer Applications in Engineering Education161728210.1002/cae.20159Open DOISearch in Google Scholar

Horno, J., Garcia-Hernández, M.T. et al. (1993). Digital-simulation of electrochemical processes by the network approach. Journal of Electroanalytical Chemistry 352(1-2): 83-97. 10.1016/0022-0728(93)80256-HHornoJ.Garcia-HernándezM.T1993Digital-simulation of electrochemical processes by the network approachJournal of Electroanalytical Chemistry3521-2839710.1016/0022-0728(93)80256-HOpen DOISearch in Google Scholar

Moya, A. (2011). Influence of DC electric current on the electrochemical impedance of ion-exchange membrane systems. Electrochimica Acta 56(8): 3015-3022. 10.1016/j.electacta.2010.12.103MoyaA.2011Influence of DC electric current on the electrochemical impedance of ion-exchange membrane systemsElectrochimica Acta5683015302210.1016/j.electacta.2010.12.103Open DOISearch in Google Scholar

Horno, J., González-Caballero, F. et al. (1990). The effect of previous convective flux on the nonstationary diffusion through membranes - network simulation. Journal of Membrane Science 48(1): 67-77. 10.1016/S0376-7388(00)80796-6HornoJ.González-CaballeroF.1990The effect of previous convective flux on the nonstationary diffusion through membranes - network simulationJournal of Membrane Science481677710.1016/S0376-7388(00)80796-6Open DOISearch in Google Scholar

Zueco, J., Alhama, F. et al. (2005). Inverse problem of estimating time-dependent heat transfer coefficient with the network simulation method. Communications in Numerical Methods in Engineering 21(1): 39-48. 10.1002/cnm.726ZuecoJ.AlhamaF.2005Inverse problem of estimating time-dependent heat transfer coefficient with the network simulation methodCommunications in Numerical Methods in Engineering211394810.1002/cnm.726Open DOISearch in Google Scholar

Alhama, I., Soto, A. et al. (2011). FATSIM-A: An educational tool based on electrical analogy and the code PSpice to simulate fluid flow and solute transport processes. Computer Applications in Engineering Education 16: 72-84.10.1016/j.icheatmasstransfer.2005.08.013AlhamaI.SotoA.2011FATSIM-A: An educational tool based on electrical analogy and the code PSpice to simulate fluid flow and solute transport processesComputer Applications in Engineering Education16728410.1016/j.icheatmasstransfer.2005.08.013Open DOISearch in Google Scholar

Alhama, I., Soto, A. et al. (2011). FATSIM-A: An educational tool based on electrical analogy and the code PSpice to simulate fluid flow and solute transport processes. Computer Applications in Engineering Education 16: 72-84.AlhamaI.SotoA.2011FATSIM-A: An educational tool based on electrical analogy and the code PSpice to simulate fluid flow and solute transport processesComputer Applications in Engineering Education167284Search in Google Scholar

Zueco, J. and Alhama, F. (2007). Simultaneous inverse determination of temperature-dependent thermophysical properties in fluids using the network simulation method. International Journal of Heat and Mass Transfer 50(15-16): 3234-3243. 10.1016/j.ijheatmasstransfer.2007.01.004ZuecoJ.AlhamaF.2007Simultaneous inverse determination of temperature-dependent thermophysical properties in fluids using the network simulation methodInternational Journal of Heat and Mass Transfer5015-163234324310.1016/j.ijheatmasstransfer.2007.01.004Open DOISearch in Google Scholar

Beg, O.A., Zueco, J. et al. (2009). Transient nonlinear optically-thick radiative-convective double-diffusive boundary layers in a darcian porous medium adjacent to an impulsively started surface: network simulation solutions. Communications in Nonlinear Science and Numerical Simulation 14(11): 3856-3866. 10.1016/j.cnsns.2009.01.033BegO.A.ZuecoJ.2009Transient nonlinear optically-thick radiative-convective double-diffusive boundary layers in a darcian porous medium adjacent to an impulsively started surface: network simulation solutionsCommunications in Nonlinear Science and Numerical Simulation14113856386610.1016/j.cnsns.2009.01.033Open DOISearch in Google Scholar

Soto, A., Alhama, F. et al. (2007). Density-Driven flow and solute transport problems. A 2D numerical model based on the network simulation method. Computer Physics Communications 177(9): 720-728. 10.1016/j.cpc.2007.06.008SotoA.AlhamaF.2007Density-Driven flow and solute transport problems. A 2D numerical model based on the network simulation methodComputer Physics Communications177972072810.1016/j.cpc.2007.06.008Open DOISearch in Google Scholar

Soto, A., Alhama, F. et al. (2007). An efficient model for solving density driven groundwater flow problems based on the network simulation method. Journal of Hydrology 339(1-2): 39-53. doi j.jhydrol.2007.03.00310.1016/j.jhydrol.2007.03.003SotoA.AlhamaF.2007An efficient model for solving density driven groundwater flow problems based on the network simulation methodJournal of Hydrology3391-23953j.jhydrol.2007.03.003Open DOISearch in Google Scholar

Alhama, I., Soto, A. et al. (2012). Simulation of flow and solute coupled 2D problems with velocity-dependent dispersion coefficient based on the network method. Hydrological Processes 26(24): 3725-3735. 10.1002/hyp.8457AlhamaI.SotoA.2012Simulation of flow and solute coupled 2D problems with velocity-dependent dispersion coefficient based on the network methodHydrological Processes26243725373510.1002/hyp.8457Open DOISearch in Google Scholar

Alcaraz, D., Alhama, F. et al. (2005). Influence of fiber distribution in the thermal continuity of composites with titanium and magnesium alloys matrix (in Spanish). Revista Española de Metalurgia Extr.: 293-303.AlcarazD.AlhamaF.2005Influence of fiber distribution in the thermal continuity of composites with titanium and magnesium alloys matrix (in Spanish)Revista Española de Metalurgia Extr293303Search in Google Scholar

Moreno, J. A., Gómez, F.C. et al. (2007). Solution of temperature fields in hydrodynamics bearings by the numerical network method. Tribology International 40(1): 139-145. 10.1016/j.triboint.2006.03.008MorenoJ. A.GómezF.C2007Solution of temperature fields in hydrodynamics bearings by the numerical network methodTribology International40113914510.1016/j.triboint.2006.03.008Open DOISearch in Google Scholar

Benavent, A., Castro, E. et al. (2010). Evaluation of low-cycle fatigue damage in RC exterior beam-column subassemblages by acoustic emission. Construction and Building Materials 24: 1830-1842. 10.1016/j.conbuildmat.2010.04.021BenaventA.CastroE.2010Evaluation of low-cycle fatigue damage in RC exterior beam-column subassemblages by acoustic emissionConstruction and Building Materials241830184210.1016/j.conbuildmat.2010.04.021Open DOISearch in Google Scholar

Marín, F., Alhama, F. et al. (2012). Modelling of stick-slip behaviour with different hypotheses on friction forces. International Journal of Engineering Science 60: 13-24. 10.1016/j.ijengsci.2012.06.002MarínF.AlhamaF.2012Modelling of stick-slip behaviour with different hypotheses on friction forcesInternational Journal of Engineering Science60132410.1016/j.ijengsci.2012.06.002Open DOISearch in Google Scholar

Morales, J.L., Moreno, J.A. et al. (2012). New additional conditions for the numerical uniqueness of the boussinesq and timpe solutions of elasticity problems. International Journal of Computer Mathematics 89(13-14): 1794-1807. 10.1080/00207160.2012.667088MoralesJ.L.MorenoJ.A2012New additional conditions for the numerical uniqueness of the boussinesq and timpe solutions of elasticity problemsInternational Journal of Computer Mathematics8913-141794180710.1080/00207160.2012.667088Open DOISearch in Google Scholar

Gómez-Lopera, S., Alhama, F. et al. (2005). PRODASIM. Programa de diseño de aletas simples. N. 08/2005/544, Universidad Politécnica de Cartagena.Gómez-LoperaS.AlhamaF.2005PRODASIM. Programa de diseño de aletas simplesN. 08/2005/544Universidad Politécnica de CartagenaSearch in Google Scholar

Alhama, F. and del Cerro, F. (2009). PROCCA. Programa de conducción de calor. N. 08/2005/544. Universidad Politécnica de Cartagena.AlhamaF.del CerroF.2009PROCCA. Programa de conducción de calorN. 08/2005/544Universidad Politécnica de CartagenaSearch in Google Scholar

Alhama, I., Soto, A. et al. (2010). FATSIM-A. Fluid flow and solute transport simulator N. D. Mu-1093-2010). Universidad Politécnica de Cartagena.AlhamaI.SotoA.2010FATSIM-A. Fluid flow and solute transport simulatorN. D. Mu-1093-2010Universidad Politécnica de CartagenaSearch in Google Scholar

Alhama, I., Soto, A. et al. (2010). FAHET. Flow and heat transport simulator. N. 08/2011/419. Cartagena, Universidad Politécnica de Cartagena.AlhamaI.SotoA.2010FAHET. Flow and heat transport simulatorN. 08/2011/419Cartagena, Universidad Politécnica de CartagenaSearch in Google Scholar

Morales, J.L., Moreno, J.A. et al. (2010). EPSNET 10. Elasticity problems simulation network. N. 08/2011/418. Universidad Politécnica de Cartagena.MoralesJ.L.MorenoJ.A2010EPSNET 10. Elasticity problems simulation networkN. 08/2011/418Universidad Politécnica de CartagenaSearch in Google Scholar

Sánchez, J.F., Moreno, J.A et al. (2013). OXIPSIS 12. N. Mu-751-2013. Universidad Politécnica de Cartagena.SánchezJ.F.MorenoJ.A2013OXIPSIS 12N. Mu-751-2013Universidad Politécnica de CartagenaSearch in Google Scholar

Peusner, L. (1987). The principles of network thermodynamics: theory and biophysical applications. Entropy, Lincoln, USA.PeusnerL.1987The principles of network thermodynamics: theory and biophysical applicationsEntropy, LincolnUSASearch in Google Scholar

Schwarz, U. D. and Hölscher, H. (2001). Atomic scale friction studies using scanning force microscopy. Modern Tribology Handbook. B. Bhushan (Ed.). CRC Press, Boca Ratón, Florida, USA: p. 593. 10.1201/9780849377877.ch18SchwarzU. D.HölscherH.2001Atomic scale friction studies using scanning force microscopyModern Tribology HandbookBhushanB.CRC Press, Boca RatónFlorida, USA59310.1201/9780849377877.ch18Open DOISearch in Google Scholar

Hölscher, H., Schwarz, U.D. et al. (1996). Simulation of a scanned tip on a NaF(001) surface in friction force microscopy. Europhysics Letters 36(1): 19-24. 10.1209/epl/i1996-00181-4HölscherH.SchwarzU.D1996Simulation of a scanned tip on a NaF(001) surface in friction force microscopyEurophysics Letters361192410.1209/epl/i1996-00181-4Open DOISearch in Google Scholar

Hölscher, H., Schwarz, U.D. et al. (1998). Consequences of the stick - lip movement for the scanning force microscopy imaging of graphite. Physical Review B 57(4): 2477-2481. 10.1103/PhysRevB.57.2477HölscherH.SchwarzU.D1998Consequences of the stick - lip movement for the scanning force microscopy imaging of graphitePhysical Review B5742477248110.1103/PhysRevB.57.2477Open DOISearch in Google Scholar

Sasaki, N., Kobayashi, K. et al. (1996). Atomic - scale friction image of graphite in atomic-force microscopy. Physical Review B 54(3): 2138-2149. 10.1103/PhysRevB.54.2138SasakiN.KobayashiK.1996Atomic - scale friction image of graphite in atomic-force microscopyPhysical Review B5432138214910.1103/PhysRevB.54.2138Open DOISearch in Google Scholar

Hölscher, H., Allers, W. et al. (2000). Interpretation of “true atomic resolution” images of graphite (0001) in noncontact atomic force microscopy. Physical Review B 62(11): 6967-6970. 10.1103/PhysRevB.62.6967HölscherH.AllersW.2000Interpretation of “true atomic resolution” images of graphite (0001) in noncontact atomic force microscopyPhysical Review B62116967697010.1103/PhysRevB.62.6967Open DOISearch in Google Scholar

Blau, P.J. (1986). Friction Science and Technology. Marcel Dekker, New York.BlauP.J.1986Friction Science and TechnologyMarcel DekkerNew YorkSearch in Google Scholar

Dowson, D. (1998). History of Tribology. Professional Engineering Publishers, London.DowsonD.1998History of TribologyProfessional Engineering PublishersLondonSearch in Google Scholar

Perry, S.S. (2001). Progress in the pursuit in the fundamentals of tribology. Tribology Letters 10(1-2), 1-4. 10.1023/A:1009034614549PerryS.S.2001Progress in the pursuit in the fundamentals of tribologyTribology Letters101-21410.1023/A:1009034614549Open DOISearch in Google Scholar

Blau, P.J. (2001). The significance and use of the friction coefficient. Tribology International 34, 585-591. doi S0301-679X(01)00050-010.1016/S0301-679X(01)00050-0BlauP.J.2001The significance and use of the friction coefficientTribology International34585591S0301-679X(01)00050-0Open DOISearch in Google Scholar

Müser, M.H. (2006). Theory and simulation of friction and lubrication. Lecture Notes Physics 704, 65. 10.1007/3-540-35284-84MüserM.H.2006Theory and simulation of friction and lubricationLecture Notes Physics7046510.1007/3-540-35284-84Open DOISearch in Google Scholar

Hess, D.P., Soom, A. (1990). Friction at a lubricated line contact operating at oscillating sliding velocities. Journal of Tribology Transactions ASME 112(1), 147-152. 10.1115/1.2920220HessD.P.SoomA.1990Friction at a lubricated line contact operating at oscillating sliding velocitiesJournal of Tribology Transactions ASME112114715210.1115/1.2920220Open DOISearch in Google Scholar

Armstrong-Hélouvry, B. (1991). Control Mach. Frict. Kluwer Academic Press, Hingham.Armstrong-HélouvryB.1991Control Mach. FrictKluwer Academic PressHingham10.1007/978-1-4615-3972-8Search in Google Scholar

Courtney-Pratt, J.S., Eisner, E. (1956). The effect of a tangential force on the contact of metallic bodies. Proceedings of the Royal Society A 238, 529-550. 10.1098/rspa.1957.0016Courtney-PrattJ.S.EisnerE.1956The effect of a tangential force on the contact of metallic bodiesProceedings of the Royal Society A 23852955010.1098/rspa.1957.0016Open DOISearch in Google Scholar

Liang, J.W., Feeny, B.F. (1998). A comparison between direct and indirect friction measurements in a forced oscillator. Journal of Applied Mechanics Transactions ASME 65(3), 783-786. 10.1115/1.2789129LiangJ.W.FeenyB.F.1998A comparison between direct and indirect friction measurements in a forced oscillatorJournal of Applied Mechanics Transactions ASME65378378610.1115/1.2789129Open DOISearch in Google Scholar

Powell, J., Wiercigroch, M. (1992). Influence of non-reversible Coulomb characteristics on the response of a harmonically excited linear oscillator. Machinery Vibration. 1(2), 94-104.PowellJ.WiercigrochM.1992Influence of non-reversible Coulomb characteristics on the response of a harmonically excited linear oscillatorMachinery Vibration1294104Search in Google Scholar

Johannes, V.I., Green, M.A., Brockley, C.A. (1973). Role of rate of application of tangential force in determining static friction coefficient. Wear 24(3), 381-385. 10.1016/0043-1648(73)90166-XJohannesV.I.GreenM.A.BrockleyC.A.1973Role of rate of application of tangential force in determining static friction coefficientWear24338138510.1016/0043-1648(73)90166-XOpen DOISearch in Google Scholar

Rabinowicz, E.J. (1951). The nature of the static and kinetic coefficients of friction. Journal of Applied Physics 22(11), 1373-1379. 10.1063/1.1699869RabinowiczE.J.1951The nature of the static and kinetic coefficients of frictionJournal of Applied Physics22111373137910.1063/1.1699869Open DOISearch in Google Scholar

Stribeck, R. (1902). Fundamental characteristics of the friction bearing and the roller bearing. Zeitschrift des Vereines Deutscher Ingenieure 46(46), 1341-1348.StribeckR.1902Fundamental characteristics of the friction bearing and the roller bearingZeitschrift des Vereines Deutscher Ingenieure464613411348Search in Google Scholar

Wojewoda, J., Stefanski, A., Wiercigroch, M., Kapitaniak, T. (2009). Estimation of Lyapunov exponents for a system with sensitive friction model. Archives in Applied Mechanics 79(6-7), 667-677. 10.1007/s00419-008-0291-9WojewodaJ.StefanskiA.WiercigrochM.KapitaniakT.2009Estimation of Lyapunov exponents for a system with sensitive friction modelArchives in Applied Mechanics796-766767710.1007/s00419-008-0291-9Open DOISearch in Google Scholar

Coulomb, C.A. (1785). Théorie desmachines simples. Mémoire de Mathémathiques et de Physique de l’Academie royale des Sciences 10, 161-182.CoulombC.A.1785Théorie desmachines simplesMémoire de Mathémathiques et de Physique de l’Academie royale des Sciences10161182Search in Google Scholar

Stefanski, A., Wojewoda, J., Wiercigroch, M., Kapitaniak, T. (2003). Chaos caused by non-reversible dry friction. Chaos Solitons Fractals 16(5), 661-664. 10.1016/S0960-0779(02)00451-4StefanskiA.WojewodaJ.WiercigrochM.KapitaniakT.2003Chaos caused by non-reversible dry frictionChaos Solitons Fractals16566166410.1016/S0960-0779(02)00451-4Open DOISearch in Google Scholar

Awrejcewicz, J., Olejnik, P. (2005). Analysis of dynamic system with various friction laws. Applied Mechanics Review 58(6), 389-411. 10.1115/1.2048687AwrejcewiczJ.OlejnikP.2005Analysis of dynamic system with various friction lawsApplied Mechanics Review58638941110.1115/1.2048687Open DOISearch in Google Scholar

Fu,W.P., Fang, Z.D., Zhao, Z.G. (2001). Periodic solutions and harmonic analysis of an anti-lock brake system with piecewise nonlinearity. Journal of Sound and Vibration 246(3), 543-550. 10.1006/jsvi.2001.3599FuW.P.FangZ.D.ZhaoZ.G.2001Periodic solutions and harmonic analysis of an anti-lock brake system with piecewise nonlinearityJournal of Sound and Vibration246354355010.1006/jsvi.2001.3599Open DOISearch in Google Scholar

Choi, H.S., Lou, J.Y.K. (1991). Nonlinear behaviour and chaotic motions of an sdof system with piecewise non-linear stiffness. International Journal of Non-linear Mechanics 26(5), 461-473. 10.1016/0020-7462(91)90002-bChoiH.S.LouJ.Y.K.1991Nonlinear behaviour and chaotic motions of an sdof system with piecewise non-linear stiffnessInternational Journal of Non-linear Mechanics26546147310.1016/0020-7462(91)90002-bOpen DOISearch in Google Scholar

Fling, R.T., Fenton, R.E. (1981). A describing-function approach to antiskid design. IEEE Transactions on Vehicle Technology 30(3), 134-144. 10.1109/T-VT.1981.23895FlingR.T.FentonR.E.1981A describing-function approach to antiskid designIEEE Transactions on Vehicle Technology30313414410.1109/T-VT.1981.23895Open DOISearch in Google Scholar

Perko, L. (1991). Differential Equations and Dynamical Systems. Springer, New York. 10.1007/978-1-4684-0392-3PerkoL.1991Differential Equations and Dynamical SystemsSpringerNew York10.1007/978-1-4684-0392-3Open DOISearch in Google Scholar

Yeh, E.C., Day, G.C. (1992). Parametric study of antiskid brake systems using Poincaré map concept. International Journal of Vehicle Des. 13,210-232.YehE.C.DayG.C.1992Parametric study of antiskid brake systems using Poincaré map conceptInternational Journal of Vehicle Des13210232Search in Google Scholar

Girling Auto website http://www.girlingauto.comGirling Auto websitehttp://www.girlingauto.comSearch in Google Scholar

Awrejcewicz, J., Olejnik, P. (2003). Numerical and experimental investigations of simple non-linear system modelling a Girling duo-servo brake mechanism. In: Proceedings of DETC’03 ASME, Chicago.AwrejcewiczJ.OlejnikP.2003Numerical and experimental investigations of simple non-linear system modelling a Girling duo-servo brake mechanismInProceedings of DETC’03 ASMEChicago10.1115/DETC2003/VIB-48479Search in Google Scholar

Awrejcewicz, J., Olejnik, P. (2007). Occurrence of stick-slip phenomenon. Journal of Theoretical and Applied Mechanics 45(1), 33-40.AwrejcewiczJ.OlejnikP.2007Occurrence of stick-slip phenomenonJournal of Theoretical and Applied Mechanics4513340Search in Google Scholar

Awrejcewicz, J., Olejnik, P. (2003). Improvement of the Lyapunov exponents computations by extension of time series. In: Proceedings of the 11th World Congress in Mechanism and Machine Science, Tianjin, ChinaAwrejcewiczJ.OlejnikP.2003Improvement of the Lyapunov exponents computations by extension of time seriesInProceedings of the 11th World Congress in Mechanism and Machine ScienceTianjin, ChinaSearch in Google Scholar

Marín, F., Alhama, F., Moreno, J.A. (2014). Modelling of nanoscale friction using network simulation method. Computers, Materials and Continua 43(1), 1-19. 10.3970/cmc.2014.043.001MarínF.AlhamaF.MorenoJ.A.2014Modelling of nanoscale friction using network simulation methodComputers, Materials and Continua43111910.3970/cmc.2014.043.001Open DOISearch in Google Scholar

Marín, F., Alhama, F., Meroño, P.A., F., Moreno, J.A. (2016). Modelling of stick-slip behaviour in a Girling Brake using network simulation method. Nonlinear Dynamics 84(1), 153-162. 10.1007/s11071-015-2312-xMarínF.AlhamaF.MeroñoP.A.F.MorenoJ.A.2016Modelling of stick-slip behaviour in a Girling Brake using network simulation methodNonlinear Dynamics84115316210.1007/s11071-015-2312-xOpen DOISearch in Google Scholar

Microsim Corporation Fairbanks (1994) PSpice 6.0, Irvine, California.Microsim Corporation Fairbanks1994PSpice 6.0Irvine, CaliforniaSearch in Google Scholar

Nagel, L.W. (1975). SPICE2: A Computer Program to Simulate Semiconductor Circuits. University of California, Berkeley.NagelL.W.1975SPICE2: A Computer Program to Simulate Semiconductor CircuitsUniversity of California, BerkeleySearch in Google Scholar

Kreith, F. (2000). The CRC Handbook of Thermal Engineering. CRC Press, London.KreithF.2000The CRC Handbook of Thermal EngineeringCRC PressLondonSearch in Google Scholar

Mills, A.F. (1998). Heat Transfer. Prentice Hall, Concord.MillsA.F.1998Heat TransferPrentice HallConcordSearch in Google Scholar

González-Fernández, C.F., Alhama, F., López-Sánchez, J.F. (1998). Application of the network method to heat conduction processes with polynomial and potential-exponentially varying thermal properties. Numerical Heat Transfer Part A Applications 33(5), 549-559. 10.1080/10407789808913954González-FernándezC.F.AlhamaF.López-SánchezJ.F.1998Application of the network method to heat conduction processes with polynomial and potential-exponentially varying thermal propertiesNumerical Heat Transfer Part A Applications33554955910.1080/10407789808913954Open DOISearch in Google Scholar

Horno, J., González-Fernández, C.F., Hayas, A. (1995). The Network Method for solutions of oscillating reaction-diffusion systems. Journal of Computational Physics 118(2), 310-319. 10.1006/jcph.1995.1101HornoJ.González-FernándezC.F.HayasA.1995The Network Method for solutions of oscillating reaction-diffusion systemsJournal of Computational Physics118231031910.1006/jcph.1995.1101Open DOISearch in Google Scholar

Soto, A., Alhama, F., González-Fernández, C.F. (2007). An efficient model for solving density driven ground-water flow problems based on the network simulation method. Journal of Hydrology 339(1-2), 39-53. 10.1016/j.jhydrol.2007.03.003SotoA.AlhamaF.González-FernándezC.F.2007An efficient model for solving density driven ground-water flow problems based on the network simulation methodJournal of Hydrology3391-2395310.1016/j.jhydrol.2007.03.003Open DOISearch in Google Scholar

Zueco, J., Alhama, F. (2006). Inverse determination of heat generation sources in two-dimensional homogeneous solids: application to orthotropicmedium. International Communications in Heat Mass Transfer 33(1), 49-55. 10.1016/j.icheatmasstransfer.2005.08.013ZuecoJ.AlhamaF.2006Inverse determination of heat generation sources in two-dimensional homogeneous solids: application to orthotropicmediumInternational Communications in Heat Mass Transfer331495510.1016/j.icheatmasstransfer.2005.08.013Open DOISearch in Google Scholar

Van de Vrande, B.L., Van Campen, D.H., De Kraker, A. (1999). An approximate analysis of dry-friction-induced stick-slip vibrations by a smoothing procedure. Nonlinear Dynamics 19, 157-169. 10.1023/A:1008306327781Van de VrandeB.L.Van CampenD.H.De KrakerA.1999An approximate analysis of dry-friction-induced stick-slip vibrations by a smoothing procedureNonlinear Dynamics1915716910.1023/A:1008306327781Open DOISearch in Google Scholar

Elmer, F.J. (1997). Nonlinear dynamics of dry friction. Journal of Physics A Math. Gen. 30(17), 6057-6063. 10.1088/0305-4470/30/17/015ElmerF.J.1997Nonlinear dynamics of dry frictionJournal of Physics A Math. Gen30176057606310.1088/0305-4470/30/17/015Open DOISearch in Google Scholar

Vladimirescu, A. (1994). The SPICE Book. Wiley, New York.VladimirescuA.1994The SPICE BookWileyNew YorkSearch in Google Scholar

Kielkowski, R. (1994). Inside SPICE. McGraw Hill, New York.KielkowskiR.1994Inside SPICEMcGraw HillNew YorkSearch in Google Scholar

Merkwirth, C., Parlitz, U., Wedekind, I., Engster, D., Lauterborn, W. (2009). OpenTSTOOL User Manual Version 1.2 (2/2009). Drittes Physikalisches Institut. Universität Göttingen.MerkwirthC.ParlitzU.WedekindI.EngsterD.LauterbornW.2009OpenTSTOOL User Manual Version 1.2 (2/2009)Drittes Physikalisches InstitutUniversität GöttingenSearch in Google Scholar

eISSN:
2444-8656
Language:
English
Publication timeframe:
2 times per year
Journal Subjects:
Life Sciences, other, Mathematics, Applied Mathematics, General Mathematics, Physics