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Influence of Heat Sources and Relaxation Time on Temperature Distribution in Tissues

Abstract

In the present study, the temperature fluctuations in tissues based on Penne’s bio-heat transfer equation is investigated by applying the Laplace and Hankel transforms. To get the solution in a physical form, a numerical inversion technique has been applied. The temporal and spatial distribution of temperature is investigated with the effect of relaxation time and is presented graphically.

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Studies of Electric Drive with Hydrostatic Support

References [1] Buckmaster, J., Clavin, P., Linan, A., Matalon, M., Peters, N., Sivashinsky, G., Williams, F. A., Combustion theory and modeling , Proceedings of the Combustion Institute, Vol. 30, pp. 1-19, Pittsburgh 2005. [2] Corcione, F. E., et al., Temporal and Spatial Evolution of Radical Species in the Experimental and Numerical Characterization of Diesel Auto-Ignition , Proceedings of The Fifth International Symposium on Diagnostics and Modeling of Combustion in Internal Combustion Engines (COMODIA 2001), pp. 355-363, Nagoya 2001. [3

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Study of the influence of temperature and water level of the reservoir about the displacement of a concrete dam

References [1] Carvalho J.V. and Romanel C (2007): Temporal neural networks applied to the monitoring of dams . – Rev. El. Sist. Inf., vol.6, No.1, pp.1-9. (In Portuguese) [2] Li F., Wang Z.Z. and Liu G. (2013): Towards an error correction model for dam monitoring data analysis based on cointegration theory . – Struct. Saf., vol.43, pp.12–20. [3] Cruz P.T. (2006): 100 Brazilian dams: case histories, building materials, project . – Oficina dos Textos, São Paulo. (In Portuguese) [4] Matos S.F. (2002): Assessment tools for auscultation

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Eigen Value Approach in Micropolar Elastic Medium with Voids

Univ. Politech. Ser. Math., vol.41, pp.29-37. Marin M. (1996): Generalized solutions in elasticity of micropolar bodies with voids . - Revista dele Academia Canaria de Ciencias, vol.8, pp.101-106. Marin M. (1998): A temporally evolutionary equation in elasticity of micropolar bodies with voids . - Politehn. Univ. Bucharest Sci. Bull. Ser. Appl. Math. Phys., vol.60, pp.3-12. Mindlin R.D. (1964): Microstructure in linear elasticity . - Archive for Rational Mechanics and Analysis, vol.16, pp.51

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Response Due to Concentrated Force in Micropolar Elastic Solid with Voids

.-A/Solids, vol.29, No.5, pp.897-910. Marin M. (1996a): On elastostatics of micropolar materials with voids. - Bull. Stiinca Univ. Politech. Ser. Math., vol.41, pp.29-37. Marin M. (1996b): Generalized solutions in elasticity of micropolar bodies with voids. - Revista dele Academia Canaria de Ciencias, vol.8, pp.101-106. Marin M. (1998): A temporally evolutionary equation in elasticity of micropolar bodies with voids. - Politehn. Univ. Bucharest Sci. Bull. Ser. Appl. Math. Phys., vol.60, pp.3-12. Mindlin R.D. (1964

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Numerical Studies of Nonlinear Gearing Models Using Bond Graph Method

] Dudkowski D., Jafari S., Kapitaniak T., Kuznetsov N., Leonov G.A. and Prased A. (2016): Hidden attractors in dynamical system . – Physics Reports, vol.637, pp.1-50. [8] Awrejcewicz J., Krysko A.V., Papkova I.V. and Krysko V.A. (2012): Routes to chaos in continuous mechanica systems. Part 3: The Lyapunov exponents, hyper-hyper and spatial-temporal chaos. – Chaos, Solitons and Fractals, vol.45, pp.721-736. [9] Cai-Wan Chang-Jian (2012): Bifurcation and chaos analysis of the porous squeeze film damper mounted gearbearing system . – Computer and Mathematics

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Evaluation of the Influence of Wind-Driven Rain on Moisture in Cellular Concrete Wall Boards

References [1] Adl-Zarrabi B. and Högberg A.B. (2002): Microclimate: Field Measurements, Driving Rain Analyses, Building Durability – Practices . – Mat. Konf. “Performance of Exterior Envelopes of Whole Buildings VIII: Integration of Building Envelopes”, (CD), Clearwater Beach, Florida. [2] Blocken B. and Carmeliet J. (2002): Spatial and Temporal Distribution of Driving Rain on Buildings: Numerical Simulation and Experimental Verivication . – Mat. Konf. “Performance of Exterior Envelopes of Whole Buildings VIII: Integration of Building Envelopes

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Propagation of plane waves in a rotating transversely isotropic two temperature generalized thermoelastic solid half-space with voids

Scalia A. (2001): On the spatial and temporal behavior in linear thermoelasticity of materials with voids . – J. Thermal Stresses, vol.24, pp.433-455. [31] Pompei A. and Scalia A. (2002): On the asymptotic spatial behavior in linear thermoelasticity of materials with voids . – J. Thermal Stresses, vol.25, pp.183-193. [32] Singh B. (2007): Wave propagation in a generalized thermoelastic material with voids . – Applied Mathematics and Computation, vol.189, pp.698-709. [33] Singh B. (2011): On theory of generalized thermoelastic solids with voids and

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Plane Waves in Thermo-Viscoelastic Material with Voids Under Different Theories of Thermoelasticity

] Chirita S. and Scalia A. (2001): On the spatial and temporal behaviour in linear thermoelasticity of materials with voids. – J. Therm. Stresses, vol.24, No.5, pp.433-455. [22] Cicco S.D. and Diaco M. (2002): A theory of thermoelastic materials with voids without energy dissipation. – J. Therm. Stresses, vol.25, No.2, pp.493-503. [23] Iesan D. and Nappa L. (2004): Thermal stresses in plane strain of porous elastic bodies. – Meccanica, vol.39, pp.125-138. [24] Iesan D. (2007): Nonlinear plane strain of elastic materials with voids. – Math. Mech

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Tracking Filter Design for Predictive Maintenance of Jet Engine – Different Approaches and their Comparison

REFERENCES [1] Tůma, J. Vehicle gearbox noise and vibration. Wiley, Chichester, West Sussex, 2014 . [2] Darula, R., Žiaran, S. An experimental study of optimal measurement point location for gear wheel state-of-wear measurements by means of vibro-acoustic diagnostics. Journal of Mechanical Engineering – Strojnícky časopis 2011 (62), No. 2, 61 – 80. [3] Dron, J.P., Cousinard, F., Bolaers, F., Chiementin, X. Setting up a temporal method to identify shock bearing defects, using vibration analysis of a transfer press within automotive field

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