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Published in: Continuum Mechanics and Thermodynamics 2/2023

13-02-2023 | Original Article

The influence of a non-local Moore–Gibson–Thompson heat transfer model on an underlying thermoelastic material under the model of memory-dependent derivatives

Authors: Ahmed E. Abouelregal, Marin Marin, Andreas Öchsner

Published in: Continuum Mechanics and Thermodynamics | Issue 2/2023

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Abstract

In this article, a modified Moore–Gibson–Thompson heat transfer equation with a memory-dependent derivative is utilized to investigate the thermoelastic interaction induced by non-Gaussian lasers in an infinitely elastic nonlocal medium. A memory-based derivative is also examined, and it was discovered to be superior at predicting the pattern of real-life challenges. This finding is part of the conviction that is currently analyzed. The idea of a memory-dependent derivative is attractive since it has some peculiarities. These characteristics include remarkable components as the kernel function and time lag, both of which can be freely selected according to the specifications of the problem. In addition, the non-local concept of Eringen was utilized in the research project so that the small-scale influence could be understood. Using the Laplace transform as a method, analytical–numerical solutions to problems involving thermo-physical fields, such as dimensionless temperature and deformation, as well as nonlocal physical stress, can be analyzed and compared. Numerical solutions have been used to explore the influence of memory-dependent derivative components such as the kernel function and the time delay coefficient on the studied domain variables of the medium. The computational outcomes of the studied fields are also used to find out the role of the non-local index.

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Literature
1.
go back to reference Abazari, A., Safavi, S., Rezazadeh, G., Villanueva, L.: Modelling the size effects on the mechanical properties of micro/nano structures. Sensors 15(11), 28543–28562 (2015)ADS Abazari, A., Safavi, S., Rezazadeh, G., Villanueva, L.: Modelling the size effects on the mechanical properties of micro/nano structures. Sensors 15(11), 28543–28562 (2015)ADS
2.
go back to reference Durkan, C., Welland, M.E.: Size effects in the electrical resistivity of polycrystalline nanowires. Phys. Rev. B 61, 14215–14218 (2000)ADS Durkan, C., Welland, M.E.: Size effects in the electrical resistivity of polycrystalline nanowires. Phys. Rev. B 61, 14215–14218 (2000)ADS
3.
go back to reference Eichler, A., Moser, J., Chaste, J., Zdrojek, M., Wilson-Rae, I., Bachtold, A.: Nonlinear damping in mechanical resonators made from carbon nanotubes and graphene. Nat. Nanotechnol. 6, 339–342 (2011)ADS Eichler, A., Moser, J., Chaste, J., Zdrojek, M., Wilson-Rae, I., Bachtold, A.: Nonlinear damping in mechanical resonators made from carbon nanotubes and graphene. Nat. Nanotechnol. 6, 339–342 (2011)ADS
4.
go back to reference Azizi, B., Shariati, M., Souq, S.M.N., Hosseini, M.: Bending and stretching behavior of graphene structures using continuum models calibrated with modal analysis. Appl. Math. Model. 114, 466–487 (2023)MathSciNet Azizi, B., Shariati, M., Souq, S.M.N., Hosseini, M.: Bending and stretching behavior of graphene structures using continuum models calibrated with modal analysis. Appl. Math. Model. 114, 466–487 (2023)MathSciNet
5.
6.
go back to reference Eringen, A.C.: Nonlocal Continuum Filed Theories. Springer, New York (2002)MATH Eringen, A.C.: Nonlocal Continuum Filed Theories. Springer, New York (2002)MATH
7.
go back to reference Eringen, A.C.: On differential equations of nonlocal elasticity and solutions of screw dislocation and surface waves. J. Appl. Phys. 54, 4703–4710 (1983)ADS Eringen, A.C.: On differential equations of nonlocal elasticity and solutions of screw dislocation and surface waves. J. Appl. Phys. 54, 4703–4710 (1983)ADS
8.
go back to reference Li, C., Guo, H., Tian, X., He, T.: Size-dependent thermo-electromechanical responses analysis of multi-layered piezoelectric nanoplates for vibration control. Compos. Struct. 225, 111112 (2019) Li, C., Guo, H., Tian, X., He, T.: Size-dependent thermo-electromechanical responses analysis of multi-layered piezoelectric nanoplates for vibration control. Compos. Struct. 225, 111112 (2019)
9.
go back to reference Mindlin, R.D.: Second gradient of strain and surface-tension in linear elasticity. Int. J. Solids Struct. 1, 414–438 (1965) Mindlin, R.D.: Second gradient of strain and surface-tension in linear elasticity. Int. J. Solids Struct. 1, 414–438 (1965)
10.
go back to reference Aifantis, E.C.: On the role of gradients in the localization of deformation and fracture. Int. J. Eng. Sci. 30, 1279–1299 (1992)MATH Aifantis, E.C.: On the role of gradients in the localization of deformation and fracture. Int. J. Eng. Sci. 30, 1279–1299 (1992)MATH
11.
go back to reference Yang, F., Chong, A.C.M., Lam, D.C.C., Tong, P.: Couple stress based strain gradient theory for elasticity. Int. J. Solids Struct. 39(7), 2731–2743 (2002)MATH Yang, F., Chong, A.C.M., Lam, D.C.C., Tong, P.: Couple stress based strain gradient theory for elasticity. Int. J. Solids Struct. 39(7), 2731–2743 (2002)MATH
12.
go back to reference Polizzotto, C.: Stress gradient versus strain gradient constitutive models within elasticity. Int. J. Solids Struct. 51, 1809–1818 (2014) Polizzotto, C.: Stress gradient versus strain gradient constitutive models within elasticity. Int. J. Solids Struct. 51, 1809–1818 (2014)
13.
go back to reference Lim, C.W., Zhang, G., Reddy, J.: A higher-order nonlocal elasticity and strain gradient theory and its application in wave propagation. J. Mech. Phys. Solids 78, 298–313 (2015)MathSciNetMATHADS Lim, C.W., Zhang, G., Reddy, J.: A higher-order nonlocal elasticity and strain gradient theory and its application in wave propagation. J. Mech. Phys. Solids 78, 298–313 (2015)MathSciNetMATHADS
14.
go back to reference Li, L., Hu, Y.J.: Buckling analysis of size-dependent nonlinear beams based on a nonlocal strain gradient theory. Int. J. Eng. Sci. 97, 84–94 (2015)MathSciNetMATH Li, L., Hu, Y.J.: Buckling analysis of size-dependent nonlinear beams based on a nonlocal strain gradient theory. Int. J. Eng. Sci. 97, 84–94 (2015)MathSciNetMATH
15.
go back to reference Ebrahimi, F., Dabbagh, A.: Viscoelastic wave propagation analysis of axially motivated double-layered graphene sheets via nonlocal strain gradient theory. Waves Random Complex Media 30(1), 157–176 (2020)MathSciNetMATH Ebrahimi, F., Dabbagh, A.: Viscoelastic wave propagation analysis of axially motivated double-layered graphene sheets via nonlocal strain gradient theory. Waves Random Complex Media 30(1), 157–176 (2020)MathSciNetMATH
16.
go back to reference Sur, A.: Non-local memory-dependent heat conduction in a magneto-thermoelastic problem. Waves Random Complex Media 32(1), 251–271 (2020)MathSciNetMATHADS Sur, A.: Non-local memory-dependent heat conduction in a magneto-thermoelastic problem. Waves Random Complex Media 32(1), 251–271 (2020)MathSciNetMATHADS
17.
go back to reference Lord, H.W., Shulman, Y.: A generalized dynamical theory of thermoelasticity. J. Mech. Phys. Solids 15, 299–309 (1967)MATHADS Lord, H.W., Shulman, Y.: A generalized dynamical theory of thermoelasticity. J. Mech. Phys. Solids 15, 299–309 (1967)MATHADS
18.
go back to reference Green, A.E., Lindsay, K.A.: Thermoelasticity. J. Elasticity 2, 1–7 (1972)MATH Green, A.E., Lindsay, K.A.: Thermoelasticity. J. Elasticity 2, 1–7 (1972)MATH
19.
go back to reference Green, A.E., Naghdi, P.M.: A re-examination of the basic postulates of thermomechanics. Proc. R. Soc. A: Math. Phys. Eng. Sci. 432, 171–194 (1991)MathSciNetMATHADS Green, A.E., Naghdi, P.M.: A re-examination of the basic postulates of thermomechanics. Proc. R. Soc. A: Math. Phys. Eng. Sci. 432, 171–194 (1991)MathSciNetMATHADS
20.
go back to reference Green, A.E., Naghdi, P.M.: Thermoelasticity without energy dissipation. J. Elasticity 31, 189–208 (1993)MathSciNetMATH Green, A.E., Naghdi, P.M.: Thermoelasticity without energy dissipation. J. Elasticity 31, 189–208 (1993)MathSciNetMATH
21.
go back to reference Tzou, D.Y.: Thermal shock phenomena under high rate response in solids. Annu. Rev. Heat Transf. 4(1), 111–185 (1992) Tzou, D.Y.: Thermal shock phenomena under high rate response in solids. Annu. Rev. Heat Transf. 4(1), 111–185 (1992)
22.
go back to reference Tzou, D.Y.: A unified field approach for heat conduction from macro- to micro-scales. J. Heat Transf. 117(1), 8–16 (1995) Tzou, D.Y.: A unified field approach for heat conduction from macro- to micro-scales. J. Heat Transf. 117(1), 8–16 (1995)
23.
go back to reference Quintanilla, R.: Moore–Gibson–Thompson thermoelasticity. Math. Mech. Solids 24, 4020–4031 (2019)MathSciNetMATH Quintanilla, R.: Moore–Gibson–Thompson thermoelasticity. Math. Mech. Solids 24, 4020–4031 (2019)MathSciNetMATH
24.
go back to reference Quintanilla, R.: Moore–Gibson–Thompson thermoelasticity with two temperatures. Appl. Eng. Sci. 1, 100006 (2020) Quintanilla, R.: Moore–Gibson–Thompson thermoelasticity with two temperatures. Appl. Eng. Sci. 1, 100006 (2020)
25.
go back to reference Abouelregal, A.E., Dassios, I., Moaaz, O.: Moore–Gibson–Thompson thermoelastic model effect of laser-induced microstructures of a microbeam sitting on Visco-Pasternak Foundations. Appl. Sci. 12, 9206 (2022) Abouelregal, A.E., Dassios, I., Moaaz, O.: Moore–Gibson–Thompson thermoelastic model effect of laser-induced microstructures of a microbeam sitting on Visco-Pasternak Foundations. Appl. Sci. 12, 9206 (2022)
26.
go back to reference Aboueregal, E., Sedighi, H.M.: The effect of variable properties and rotation in a visco-thermoelastic orthotropic annular cylinder under the Moore Gibson Thompson heat conduction model. Proc. Inst. Mech. Eng. Part L J. Mater. Des. Appl. 235, 1004–1020 (2021) Aboueregal, E., Sedighi, H.M.: The effect of variable properties and rotation in a visco-thermoelastic orthotropic annular cylinder under the Moore Gibson Thompson heat conduction model. Proc. Inst. Mech. Eng. Part L J. Mater. Des. Appl. 235, 1004–1020 (2021)
27.
go back to reference Abouelregal, A.E., Ersoy, H., Civalek, Ö.: Solution of Moore-Gibson-Thompson equation of an unbounded medium with a cylindrical hole. Mathematics 9, 1536 (2021) Abouelregal, A.E., Ersoy, H., Civalek, Ö.: Solution of Moore-Gibson-Thompson equation of an unbounded medium with a cylindrical hole. Mathematics 9, 1536 (2021)
28.
go back to reference Bazarra, N., Fernández, J.R., Quintanilla, R.: Analysis of a Moore–Gibson–Thompson thermoelastic problem. J. Comp. Appl. Math. 382, 113058 (2021)MathSciNetMATH Bazarra, N., Fernández, J.R., Quintanilla, R.: Analysis of a Moore–Gibson–Thompson thermoelastic problem. J. Comp. Appl. Math. 382, 113058 (2021)MathSciNetMATH
29.
go back to reference Abouelregal, A.E., Saidi, A., Mohammad-Sedighi, H., Shirazi, A.H., Sofiyev, A.H.: Thermoelastic behavior of an isotropic solid sphere under a non-uniform heat flow according to the MGT thermoelastic model. J. Therm. Stress. 45(1), 12–29 (2022) Abouelregal, A.E., Saidi, A., Mohammad-Sedighi, H., Shirazi, A.H., Sofiyev, A.H.: Thermoelastic behavior of an isotropic solid sphere under a non-uniform heat flow according to the MGT thermoelastic model. J. Therm. Stress. 45(1), 12–29 (2022)
30.
go back to reference Wang, J.L., Li, H.F.: Surpassing the fractional derivative: concept of the memory-dependent derivative. Comput. Math. with Appl. 62, 1562–1567 (2011)MathSciNetMATH Wang, J.L., Li, H.F.: Surpassing the fractional derivative: concept of the memory-dependent derivative. Comput. Math. with Appl. 62, 1562–1567 (2011)MathSciNetMATH
31.
go back to reference Li, H.F., Wang, J.L.: Molding the dynamic system with memory-dependent derivative. 24th Chinese Control and Decision Conference (CCDC) Taiyuan, 23–25 May (2012) Li, H.F., Wang, J.L.: Molding the dynamic system with memory-dependent derivative. 24th Chinese Control and Decision Conference (CCDC) Taiyuan, 23–25 May (2012)
32.
go back to reference Ezzat, M.A., Bary, A.A.: State space approach of two-temperature magnetothermoelasticity with thermal relaxation in a medium of perfect conductivity. Int. J. Eng. Sci. 47, 618–630 (2009)MATH Ezzat, M.A., Bary, A.A.: State space approach of two-temperature magnetothermoelasticity with thermal relaxation in a medium of perfect conductivity. Int. J. Eng. Sci. 47, 618–630 (2009)MATH
33.
go back to reference Ezzat, M.A., El-Karamany, A.S., El-Bary, A.A.: Generalized thermo-viscoelasticity with memory-dependent derivatives. Int. J. Mech. Sci. 89, 470–475 (2014) Ezzat, M.A., El-Karamany, A.S., El-Bary, A.A.: Generalized thermo-viscoelasticity with memory-dependent derivatives. Int. J. Mech. Sci. 89, 470–475 (2014)
34.
go back to reference Ezzat, M.A., El-Karamany, A.S., El-Bary, A.A.: Modeling of memory-dependent derivative in generalized thermoelasticity. Eur. Phys. J. Plus 131(7), 1–12 (2016) Ezzat, M.A., El-Karamany, A.S., El-Bary, A.A.: Modeling of memory-dependent derivative in generalized thermoelasticity. Eur. Phys. J. Plus 131(7), 1–12 (2016)
35.
go back to reference Sun, Y., Fang, D., Saka, M., Soh, A.K.: Laser-induced vibrations of micro-beams under different boundary conditions. J. Mech. Phys. Solids 45(7–8), 1993–2013 (2008)MATH Sun, Y., Fang, D., Saka, M., Soh, A.K.: Laser-induced vibrations of micro-beams under different boundary conditions. J. Mech. Phys. Solids 45(7–8), 1993–2013 (2008)MATH
36.
go back to reference Tzou, D.Y.: Macro-to microscale Heat Transfer: The Lagging Behavior. Taylor & Francis, New York (1997) Tzou, D.Y.: Macro-to microscale Heat Transfer: The Lagging Behavior. Taylor & Francis, New York (1997)
37.
go back to reference Chakraborty, S., Lahiri, A., Das, B.: Eigen value approach with memory dependent derivative on homogeneous isotropic infinitely extended rotating plate of a finite thickness in absence of heat source. J. Eng. Therm. Sci. 2(2), 69–83 (2022) Chakraborty, S., Lahiri, A., Das, B.: Eigen value approach with memory dependent derivative on homogeneous isotropic infinitely extended rotating plate of a finite thickness in absence of heat source. J. Eng. Therm. Sci. 2(2), 69–83 (2022)
38.
go back to reference Das, N.C., Lahiri, A., Sarkar, S.: Eigenvalue value approach three dimensional coupled thermoelasticity in a rotating transversely isotropic medium. Tamsui Oxford J. Math. Sci. 25, 237–257 (2009)MathSciNetMATH Das, N.C., Lahiri, A., Sarkar, S.: Eigenvalue value approach three dimensional coupled thermoelasticity in a rotating transversely isotropic medium. Tamsui Oxford J. Math. Sci. 25, 237–257 (2009)MathSciNetMATH
39.
go back to reference Bachher, M., Sarkar, N., Lahiri, A.: Generalized thermoelastic infinite medium with voids subjected to a instantaneous heat sources with fractional derivative heat transfer. Int. J. Mech. Sci. 89, 84–91 (2012) Bachher, M., Sarkar, N., Lahiri, A.: Generalized thermoelastic infinite medium with voids subjected to a instantaneous heat sources with fractional derivative heat transfer. Int. J. Mech. Sci. 89, 84–91 (2012)
40.
go back to reference Sarkar, N.: Thermoelastic responses of a finite rod due to nonlocal heat conduction. Acta Mech. 231, 947–955 (2020)MathSciNetMATH Sarkar, N.: Thermoelastic responses of a finite rod due to nonlocal heat conduction. Acta Mech. 231, 947–955 (2020)MathSciNetMATH
41.
go back to reference Roychoudhuri, S.K., Dutta, P.S.: Thermoelastic interaction without energy dissipation in an infinite solid with distributed periodically varying heat sources. Int. J. Solids Struct. 42, 4192–4203 (2005)MATH Roychoudhuri, S.K., Dutta, P.S.: Thermoelastic interaction without energy dissipation in an infinite solid with distributed periodically varying heat sources. Int. J. Solids Struct. 42, 4192–4203 (2005)MATH
42.
go back to reference Wang, Q., Zhan, H.: On different numerical inverse Laplace methods for solute transport problems. Adv. Water Resour. 75, 80–92 (2015)ADS Wang, Q., Zhan, H.: On different numerical inverse Laplace methods for solute transport problems. Adv. Water Resour. 75, 80–92 (2015)ADS
43.
go back to reference Wójcik, M., Szukiewicz, M., Kowalik, P.: Application of Numerical Laplace Inversion Methods in Chemical Engineering with Maple®. J. Appl. Comp. Sci. Meth. 7(1), 5–15 (2015) Wójcik, M., Szukiewicz, M., Kowalik, P.: Application of Numerical Laplace Inversion Methods in Chemical Engineering with Maple®. J. Appl. Comp. Sci. Meth. 7(1), 5–15 (2015)
44.
go back to reference Cheng, A., Sidauruk, P.: Approximate inversion of the Laplace transform. Math. J. 4, 76–82 (1994) Cheng, A., Sidauruk, P.: Approximate inversion of the Laplace transform. Math. J. 4, 76–82 (1994)
45.
go back to reference Kumar, R., Miglani, A., Rani, R.: Transient analysis of nonolocal microstretch thermoelastic thick circular plate with phase lags. Med. J. Model Simul. 09, 025–042 (2018) Kumar, R., Miglani, A., Rani, R.: Transient analysis of nonolocal microstretch thermoelastic thick circular plate with phase lags. Med. J. Model Simul. 09, 025–042 (2018)
46.
47.
go back to reference Kostyrko, S., Grekov, M., Altenbach, H.: Stress concentration analysis of nanosized thin-film coating with rough interface. Contin. Mech. Therm. 31, 1863–1871 (2019)MathSciNet Kostyrko, S., Grekov, M., Altenbach, H.: Stress concentration analysis of nanosized thin-film coating with rough interface. Contin. Mech. Therm. 31, 1863–1871 (2019)MathSciNet
48.
go back to reference Li, C., He, T., Tian, X.: Nonlocal theory of thermoelastic diffusive materials and its application in structural dynamic thermo-elasto-diffusive responses analysis. Waves Random Complex Media 32(1), 174–203 (2022)MathSciNetMATHADS Li, C., He, T., Tian, X.: Nonlocal theory of thermoelastic diffusive materials and its application in structural dynamic thermo-elasto-diffusive responses analysis. Waves Random Complex Media 32(1), 174–203 (2022)MathSciNetMATHADS
49.
go back to reference Elghamdi, N.A.: The vibration of nano-beam subjected to thermal shock and moving heat source with constant speed. J. Nano Res. 61, 136–150 (2020) Elghamdi, N.A.: The vibration of nano-beam subjected to thermal shock and moving heat source with constant speed. J. Nano Res. 61, 136–150 (2020)
50.
go back to reference Sur, A.: Non-local memory-dependent heat conduction in a magneto-thermoelastic problem. Waves Random Complex Media 32(1), 251–271 (2020)MathSciNetMATHADS Sur, A.: Non-local memory-dependent heat conduction in a magneto-thermoelastic problem. Waves Random Complex Media 32(1), 251–271 (2020)MathSciNetMATHADS
51.
go back to reference Abouelregal, A.E., Moustapha, M.V., Nofal, T.A., Rashid, S., Ahmad, H.: Generalized thermoelasticity based on higher-order memory-dependent derivative with time delay. Res. Phys. 20, 103705 (2021) Abouelregal, A.E., Moustapha, M.V., Nofal, T.A., Rashid, S., Ahmad, H.: Generalized thermoelasticity based on higher-order memory-dependent derivative with time delay. Res. Phys. 20, 103705 (2021)
52.
go back to reference Abouelregal, A.E.: An advanced model of thermoelasticity with higher-order memory-dependent derivatives and dual time-delay factors. Waves Random Complex Media 32(6), 2918–2939 (2022)MathSciNetMATHADS Abouelregal, A.E.: An advanced model of thermoelasticity with higher-order memory-dependent derivatives and dual time-delay factors. Waves Random Complex Media 32(6), 2918–2939 (2022)MathSciNetMATHADS
53.
go back to reference Awwad, E., Abouelregal, A.E., Hassan, A.A.: Thermoelastic Memory-dependent Responses to an Infinite Medium with a Cylindrical Hole and Temperature-dependent Properties. Appl. Comp. Mech. 7, 870–882 (2021) Awwad, E., Abouelregal, A.E., Hassan, A.A.: Thermoelastic Memory-dependent Responses to an Infinite Medium with a Cylindrical Hole and Temperature-dependent Properties. Appl. Comp. Mech. 7, 870–882 (2021)
54.
go back to reference Kaur, I., Singh, K.: Functionally graded nonlocal thermoelastic nanobeam with memory-dependent derivatives. SN Appl. Sci. 4, 329 (2022) Kaur, I., Singh, K.: Functionally graded nonlocal thermoelastic nanobeam with memory-dependent derivatives. SN Appl. Sci. 4, 329 (2022)
55.
go back to reference Marin, M., Öchsner, A.: The effect of a dipolar structure on the Hölder stability in Green-Naghdi thermoelasticity. Contin. Mech. Thermodyn. 29(3), 1365–1374 (2017)MathSciNetMATHADS Marin, M., Öchsner, A.: The effect of a dipolar structure on the Hölder stability in Green-Naghdi thermoelasticity. Contin. Mech. Thermodyn. 29(3), 1365–1374 (2017)MathSciNetMATHADS
56.
go back to reference Abouelregal, A.E., Marin, M.: The response of nanobeams with temperature-dependent properties using state-space method via modified couple stress theory. Symmetry 12(5), Art. No. 1276 (2020) Abouelregal, A.E., Marin, M.: The response of nanobeams with temperature-dependent properties using state-space method via modified couple stress theory. Symmetry 12(5), Art. No. 1276 (2020)
57.
go back to reference Scutaru, M.L., Vlase, S., et al.: New analytical method based on dynamic response of planar mechanical elastic systems, Bound. Value Probl. 2020, No.1, Art. No. 104 (2020) Scutaru, M.L., Vlase, S., et al.: New analytical method based on dynamic response of planar mechanical elastic systems, Bound. Value Probl. 2020, No.1, Art. No. 104 (2020)
58.
go back to reference Vlase, S., Năstac, C., Marin, M., Mihălcică, M.: A method for the study of the vibration of mechanical bars systems with symmetries. Acta Tech. Napocensis, Ser. Appl. Math. Mech. Eng. 60(1), 539–544 (2017) Vlase, S., Năstac, C., Marin, M., Mihălcică, M.: A method for the study of the vibration of mechanical bars systems with symmetries. Acta Tech. Napocensis, Ser. Appl. Math. Mech. Eng. 60(1), 539–544 (2017)
59.
go back to reference Alzahrani, F., Hobiny, A., Abbas, I., Marin, M.: An eigenvalues approach for a two-dimensional porous medium based upon weak, normal and strong thermal conductivities. Symmetry 12(2), Art. No. 848 (2020) Alzahrani, F., Hobiny, A., Abbas, I., Marin, M.: An eigenvalues approach for a two-dimensional porous medium based upon weak, normal and strong thermal conductivities. Symmetry 12(2), Art. No. 848 (2020)
60.
go back to reference Marin, M., Ellahi, R., Vlase, S., Bhatti, M.M.: On the decay of exponential type for the solutions in a dipolar elastic body. J. Taibah Univ. Sci. 14(1), 534–540 (2020) Marin, M., Ellahi, R., Vlase, S., Bhatti, M.M.: On the decay of exponential type for the solutions in a dipolar elastic body. J. Taibah Univ. Sci. 14(1), 534–540 (2020)
61.
go back to reference Zakaria, K., Sirwah, M.A., Abouelregal, A.E., Rashid, A.F.: Photothermoelastic survey with memory-dependent response for a rotating solid cylinder under varying heat flux via dual phase lag model. Pramana - J. Phys. 96, 219 (2022)ADS Zakaria, K., Sirwah, M.A., Abouelregal, A.E., Rashid, A.F.: Photothermoelastic survey with memory-dependent response for a rotating solid cylinder under varying heat flux via dual phase lag model. Pramana - J. Phys. 96, 219 (2022)ADS
Metadata
Title
The influence of a non-local Moore–Gibson–Thompson heat transfer model on an underlying thermoelastic material under the model of memory-dependent derivatives
Authors
Ahmed E. Abouelregal
Marin Marin
Andreas Öchsner
Publication date
13-02-2023
Publisher
Springer Berlin Heidelberg
Published in
Continuum Mechanics and Thermodynamics / Issue 2/2023
Print ISSN: 0935-1175
Electronic ISSN: 1432-0959
DOI
https://doi.org/10.1007/s00161-023-01195-y

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