@article{UMJ_2020_6_1_a12,
author = {Tursun K. Yuldashev and Bakhtiyor J. Kadirkulov},
title = {Nonlocal problem for a mixed type fourth-order differential equation with {Hilfer} fractional operator},
journal = {Ural mathematical journal},
pages = {153--167},
year = {2020},
volume = {6},
number = {1},
language = {en},
url = {http://geodesic.mathdoc.fr/item/UMJ_2020_6_1_a12/}
}
TY - JOUR AU - Tursun K. Yuldashev AU - Bakhtiyor J. Kadirkulov TI - Nonlocal problem for a mixed type fourth-order differential equation with Hilfer fractional operator JO - Ural mathematical journal PY - 2020 SP - 153 EP - 167 VL - 6 IS - 1 UR - http://geodesic.mathdoc.fr/item/UMJ_2020_6_1_a12/ LA - en ID - UMJ_2020_6_1_a12 ER -
%0 Journal Article %A Tursun K. Yuldashev %A Bakhtiyor J. Kadirkulov %T Nonlocal problem for a mixed type fourth-order differential equation with Hilfer fractional operator %J Ural mathematical journal %D 2020 %P 153-167 %V 6 %N 1 %U http://geodesic.mathdoc.fr/item/UMJ_2020_6_1_a12/ %G en %F UMJ_2020_6_1_a12
Tursun K. Yuldashev; Bakhtiyor J. Kadirkulov. Nonlocal problem for a mixed type fourth-order differential equation with Hilfer fractional operator. Ural mathematical journal, Tome 6 (2020) no. 1, pp. 153-167. http://geodesic.mathdoc.fr/item/UMJ_2020_6_1_a12/
[1] Abdullaev O. Kh., Sadarangani K., “Non-local problems with integral gluing condition for loaded mixed type equations involving the Caputo fractional derivative”, Electron. J. Differential Equations, 2016:164 (2016), 1–10 URL: https://ejde.math.txstate.edu | MR
[2] Hilfer R. (ed.), Application of Fractional Calculus in Physics, World Scientific Publishing Company, Singapore, 2000, 472 pp. | DOI | MR
[3] Agarwal P., Berdyshev A., Karimov E., “Solvability of a non-local problem with integral transmitting condition for mixed type equation with Caputo fractional derivative”, Results Math., 71 (2017), 1235–1257 | DOI | MR | Zbl
[4] Aziz S., Malik S. A., “Identification of an unknown source term for a time fractional fourth-order parabolic equation”, Electron. J. Differential Equations, 2016:293 (2016), 1–20 URL: https://ejde.math.txstate.edu | MR
[5] Berdyshev A. S., Cabada A., Kadirkulov B. J., “The Samarskii–Ionkin type problem for the fourth order parabolic equation with fractional differential operator”, Comput. Math. Appl., 62 (2011), 3884–3893 | DOI | MR | Zbl
[6] Berdyshev A. S., Kadirkulov J. B., “On a nonlocal problem for a fourth-order parabolic equation with the fractional Dzhrbashyan–Nersesyan operator”, Differ. Equ., 52:1 (2016), 122–127 | DOI | MR | Zbl
[7] Beshtokov M. Kh., “Boundary value problems for the generalized modified moisture transfer equation and difference methods for their numerical implementation”, Appl. Math. Phys., 52:2 (2020), 128–138 (in Russian) | DOI | MR
[8] Gel'fand I. M., “Some questions of analysis and differential equations”, Uspekhi Matem. Nauk, 14:3 (1959), 3–19 (in Russian) | MR | Zbl
[9] Tenreiro Machado J. A. (ed.), Handbook of Fractional Calculus with Applications, v. 1–8, Walter de Gruyter GmbH, Berlin, Boston, 2019
[10] Hilfer R., “Experimental evidence for fractional time evolution in glass forming materials”, Chem. Phys., 284:1–2 (2002), 399–408 | DOI | MR
[11] Hilfer R., “On fractional relaxation”, Fractals. Part III: Scaling, 11, Supp. 01. (2003), 251–257 | DOI | MR | Zbl
[12] Hilfer R., Luchko Y., Tomovski Ž., “Operational method for the solution of fractional differential equations with generalized Riemann-Liouville fractional derivatives”, Fract. Calc. Appl. Anal., 12:3 (2009), 299–318 URL: http://www.math.bas.bg/f̃caa/volume12/fcaa123 | MR | Zbl
[13] Kal’menov T. S., Sadybekov M. A., “On a Frankl-type problem for a mixed parabolic-hyperbolic equation”, Sib. Math. J., 58:2 (2017), 227–231 | DOI | MR | Zbl
[14] Kerbal S., Kadirkulov B. J., Kirane M., “Direct and inverse problems for a Samarskii–Ionkin type problem for a two dimensional fractional parabolic equation”, Progr. Fract. Differ. Appl., 4:3 (2018), 147–160 | DOI
[15] Kim M.-Ha, Ri G.-Chol, O. H.-Chol, “Operational method for solving multi-term fractional differential equations with the generalized fractional derivatives”, Fract. Calc. Appl. Anal., 17:1 (2014), 79–95 | DOI | MR | Zbl
[16] Kumar D., Baleanu D., “Editorial: fractional calculus and its applications in physics”, Front. Phys., 7:6 (2019), 1–2 | DOI | MR
[17] Malik S. A., Aziz S., “An inverse source problem for a two parameter anomalous diffusion equation with nonlocal boundary conditions”, Comput. Math. Appl., 73:12 (2017), 2548–2560 | DOI | MR | Zbl
[18] Nakhushev A. M., Zadachi so smeshcheniem dlya uravnenij v chastnyh proizvodnyh [Problems with Displacement for Partial Differential Equations], Nauka, Moscow, 2006, 287 pp. (in Russian)
[19] Patnaik S., Hollkamp J. P., Semperlotti F., “Applications of variable-order fractional operators: a review”, Proc. A, 476:2234 (2020), 1–32 | DOI | MR
[20] Sabitov K. B., “Nonlocal problem for a parabolic-hyperbolic equation in a rectangular domain”, Math. Notes, 89:4 (2011), 562–567 | DOI | MR | Zbl
[21] Sabitov K. B., K teorii uravnenij smeshannogo tipa [On the Theory of Mixed Type Equations], Fizmatlit, Moscow, 2014, 304 pp. (in Russian)
[22] Sabitov K. B., Sidorov S. N., “On a nonlocal problem for a degenerating parabolic-hyperbolic equation”, Differ. Equ., 50:3 (2014), 352–361 | DOI | MR | Zbl
[23] Sandev T., Metzler R., Tomovski Ž., “Fractional diffusion equation with a generalized Riemann-Liouville time fractional derivative”, J. Phys. A. Math. Theor., 44:25 (2011), 255203 | DOI | MR | Zbl
[24] Sandev T., Tomovski Ž., Fractional Equations and Models: Theory and Applications, Dev. Math., 61, Springer Nature Switzerland AG, Cham, Switzerland, 2019, 345 pp. | DOI | Zbl
[25] Saxena R. K., Garra R., Orsingher E., “Analytical solution of space-time fractional telegraph-type equations involving Hilfer and Hadamard derivatives”, Integral Transforms Spec. Funct., 27:1 (2015), 30–42 | DOI | MR
[26] Sun H., Chang A., Zhang Y., Chen W., “A review on variable-order fractional differential equations: mathematical foundations, physical models, numerical methods and applications”, Fract. Calc. Appl. Anal., 22:1 (2019), 27–59 | DOI | MR | Zbl
[27] Terlyga O., Bellout H., Bloom F., “A hyperbolic-parabolic system arising in pulse combustion: existence of solutions for the linearized problem”, Electron. J. Differential Equations, 2013:46 (2013), 1–42 URL: https://ejde.math.txstate.edu | MR
[28] Uflyand Ya. S., “K voprosu o rasprostranenii kolebanij v sostavnyh elektricheskih liniyah [On oscillation propagation in compound electric lines]”, Inzhener.-Phis. Zhurn. [J. of Engineering Physics and Thermophysics], 7:1 (1964), 89–92 (in Russian)
[29] Yuldashev T. K., “Nonlocal problem for a mixed type differential equation in rectangular domain”, Proc. Yerevan State Univ. Phys. Math. Sci., 2016, no. 3, 70–78 | MR | Zbl
[30] Yuldashev T. K., “Solvability of a boundary value problem for a differential equation of the Boussinesq type”, Differ. equ., 54:10 (2018), 1384–1393 | DOI | MR | Zbl
[31] Yuldashev T. K., “A coefficient determination in nonlocal problem for Boussinesq type integro-differential equation with degenerate kernel”, Vladikavkaz. Mat. Zh., 21:2 (2019), 67–84 (in Russian) | DOI | MR
[32] Yuldashev T. K., “On a boundary-value problem for Boussinesq type nonlinear integro-differential equation with reflecting argument”, Lobachevskii J. Math., 41:1 (2020), 111–123 | DOI | MR
[33] Yuldashev T. K., “Nonlocal inverse problem for a pseudohyperbolic-pseudoelliptic type integro-differential equations”, Axioms, 9:2 (2020), 45, 1–21 | DOI