Jha, Basant K.; Gambo, Dauda Hydrodynamic effect of slip boundaries and exponentially decaying/growing time-dependent pressure gradient on Dean flow. (English) Zbl 07443647 J. Egypt. Math. Soc. 29, Paper No. 11, 15 p. (2021). MSC: 76D05 76A02 76S05 PDF BibTeX XML Cite \textit{B. K. Jha} and \textit{D. Gambo}, J. Egypt. Math. Soc. 29, Paper No. 11, 15 p. (2021; Zbl 07443647) Full Text: DOI OpenURL
Kaltenbach, Alex Theory of pseudo-monotone operators for unsteady problems in variable exponent spaces. (English) Zbl 1486.47002 Freiburg im Breisgau: Univ. Freiburg, Fakultät für Mathematik und Physik (Diss.). xii, 213 p. (2021). MSC: 47-02 47J05 47H05 47N50 76W05 76D05 PDF BibTeX XML Cite \textit{A. Kaltenbach}, Theory of pseudo-monotone operators for unsteady problems in variable exponent spaces. Freiburg im Breisgau: Univ. Freiburg, Fakultät für Mathematik und Physik (Diss.) (2021; Zbl 1486.47002) Full Text: Link Link OpenURL
Li, Xi; Luo, Jiafu; Feng, Minfu A nonlinear local projection-based finite element method for unsteady Navier-Stokes equations. (Chinese. English summary) Zbl 07404198 J. Sichuan Univ., Nat. Sci. Ed. 58, No. 3, 031002-1-9 (2021). MSC: 65M60 65M12 65M06 65N30 76D05 76M10 76M20 PDF BibTeX XML Cite \textit{X. Li} et al., J. Sichuan Univ., Nat. Sci. Ed. 58, No. 3, 031002--1-9 (2021; Zbl 07404198) Full Text: DOI OpenURL
Jha, Basant K.; Gambo, Dauda Combined effects of suction/injection and exponentially decaying/growing time-dependent pressure gradient on unsteady Dean flow: a semi-analytical approach. (English) Zbl 1478.76019 GEM. Int. J. Geomath. 11, Paper No. 28, 22 p. (2020). MSC: 76D05 76A02 76S05 PDF BibTeX XML Cite \textit{B. K. Jha} and \textit{D. Gambo}, GEM. Int. J. Geomath. 11, Paper No. 28, 22 p. (2020; Zbl 1478.76019) Full Text: DOI OpenURL
Fang, T. G.; Wang, F. J. Momentum and heat transfer of a special case of the unsteady stagnation-point flow. (English) Zbl 1462.76041 AMM, Appl. Math. Mech., Engl. Ed. 41, No. 1, 51-82 (2020). MSC: 76D05 80A19 PDF BibTeX XML Cite \textit{T. G. Fang} and \textit{F. J. Wang}, AMM, Appl. Math. Mech., Engl. Ed. 41, No. 1, 51--82 (2020; Zbl 1462.76041) Full Text: DOI OpenURL
Xie, Yaning; Ying, Wenjun A high-order kernel-free boundary integral method for incompressible flow equations in two space dimensions. (English) Zbl 1463.65277 Numer. Math., Theory Methods Appl. 13, No. 3, 595-619 (2020). MSC: 65M38 65M06 65N38 76D05 76D07 35Q30 PDF BibTeX XML Cite \textit{Y. Xie} and \textit{W. Ying}, Numer. Math., Theory Methods Appl. 13, No. 3, 595--619 (2020; Zbl 1463.65277) Full Text: DOI OpenURL
Kumar, Atendra; Ray, Rajendra K. Theoretical understanding of unsteady flow separation for shear flow past three square cylinders in vee shape using structural bifurcation analysis. (English) Zbl 1449.65298 Comput. Appl. Math. 39, No. 3, Paper No. 177, 32 p. (2020). MSC: 65N06 65Z05 65Y99 35B32 76F10 76D05 35Q35 76M20 PDF BibTeX XML Cite \textit{A. Kumar} and \textit{R. K. Ray}, Comput. Appl. Math. 39, No. 3, Paper No. 177, 32 p. (2020; Zbl 1449.65298) Full Text: DOI OpenURL
de Carvalho-Neto, Paulo M.; Fehlberg, Renato jun. On the fractional version of Leibniz rule. (English) Zbl 07205982 Math. Nachr. 293, No. 4, 670-700 (2020). MSC: 26A33 33B15 35R11 76D05 PDF BibTeX XML Cite \textit{P. M. de Carvalho-Neto} and \textit{Renato~jun. Fehlberg}, Math. Nachr. 293, No. 4, 670--700 (2020; Zbl 07205982) Full Text: DOI arXiv OpenURL
Lav, Chitrarth; Sandberg, Richard D.; Philip, Jimmy A framework to develop data-driven turbulence models for flows with organised unsteadiness. (English) Zbl 1451.76060 J. Comput. Phys. 383, 148-165 (2019). MSC: 76F55 76D05 76F65 68T07 PDF BibTeX XML Cite \textit{C. Lav} et al., J. Comput. Phys. 383, 148--165 (2019; Zbl 1451.76060) Full Text: DOI OpenURL
Maripala, Srinivas; Naikoti, Kishan Joule heat parameter effects on unsteady MHD flow over a stretching sheet with viscous dissipation and heat source. (English) Zbl 1441.74061 Appl. Appl. Math., Spec. Iss. 4, 44-53 (2019). MSC: 74F05 74S20 76A05 76W05 76D05 80A19 PDF BibTeX XML Cite \textit{S. Maripala} and \textit{K. Naikoti}, Appl. Appl. Math., 44--53 (2019; Zbl 1441.74061) Full Text: Link OpenURL
Hashimoto, T.; Tanno, I.; Yasuda, T.; Tanaka, Y.; Morinishi, K.; Satofuka, N. Optimized finite difference method with artificial dissipation for under-resolved unsteady incompressible flow computations using kinetically reduced local Navier-Stokes equations. (English) Zbl 1411.76098 Comput. Fluids 184, 21-28 (2019). MSC: 76M20 65M06 65Y10 76D05 PDF BibTeX XML Cite \textit{T. Hashimoto} et al., Comput. Fluids 184, 21--28 (2019; Zbl 1411.76098) Full Text: DOI OpenURL
Hafien, Chedhli; Mbarek, Talel Ben Reduced order model for the lift coefficient of an airfoil equipped with extrados and/or trailing edge flexible flaps. (English) Zbl 1410.76041 Comput. Fluids 180, 82-95 (2019). MSC: 76D05 76-04 76G25 76M25 PDF BibTeX XML Cite \textit{C. Hafien} and \textit{T. B. Mbarek}, Comput. Fluids 180, 82--95 (2019; Zbl 1410.76041) Full Text: DOI OpenURL
Dholey, S. Unsteady separated stagnation-point flow over a permeable surface. (English) Zbl 1404.76073 Z. Angew. Math. Phys. 70, No. 1, Paper No. 10, 19 p. (2019). MSC: 76D05 76D10 PDF BibTeX XML Cite \textit{S. Dholey}, Z. Angew. Math. Phys. 70, No. 1, Paper No. 10, 19 p. (2019; Zbl 1404.76073) Full Text: DOI OpenURL
Chen, Rongliang; Yan, Zhengzheng; Zhao, Yubo; Cai, Xiao-Chuan Scalable domain decomposition algorithms for simulation of flows passing full size wind turbine. (English) Zbl 1475.76058 Commun. Comput. Phys. 24, No. 5, 1503-1522 (2018). MSC: 76M10 65M60 65M55 65Y05 76D05 76U05 PDF BibTeX XML Cite \textit{R. Chen} et al., Commun. Comput. Phys. 24, No. 5, 1503--1522 (2018; Zbl 1475.76058) Full Text: DOI OpenURL
Toutant, Adrien Numerical simulations of unsteady viscous incompressible flows using general pressure equation. (English) Zbl 1416.76162 J. Comput. Phys. 374, 822-842 (2018). MSC: 76M12 65M50 76D05 PDF BibTeX XML Cite \textit{A. Toutant}, J. Comput. Phys. 374, 822--842 (2018; Zbl 1416.76162) Full Text: DOI arXiv OpenURL
Denisova, Irina V.; Solonnikov, Vsevolod A. \(L_2\)-theory for two incompressible fluids separated by a free interface. (English) Zbl 1416.35182 Topol. Methods Nonlinear Anal. 52, No. 1, 213-238 (2018). Reviewer: Gelu Paşa (Bucureşti) MSC: 35Q30 76D05 35R35 76D45 PDF BibTeX XML Cite \textit{I. V. Denisova} and \textit{V. A. Solonnikov}, Topol. Methods Nonlinear Anal. 52, No. 1, 213--238 (2018; Zbl 1416.35182) Full Text: DOI Euclid OpenURL
Bhatti, Kaleemullah; Bano, Zarqa; Siddiqui, Abdul Majeed Unsteady Stokes flow through porous channel with periodic suction and injection with slip conditions. (English) Zbl 1413.76021 Eur. J. Pure Appl. Math. 11, No. 4, 937-945 (2018). MSC: 76D05 76D07 76S05 PDF BibTeX XML Cite \textit{K. Bhatti} et al., Eur. J. Pure Appl. Math. 11, No. 4, 937--945 (2018; Zbl 1413.76021) Full Text: Link OpenURL
Lei, Yanfang; Yang, Yang; Si, Zhiyong Error estimate of a fully discrete defect correction finite element method for unsteady incompressible magnetohydrodynamics equations. (English) Zbl 1397.76029 Appl. Anal. 97, No. 13, 2355-2376 (2018). MSC: 76D05 35Q30 65M60 65N30 PDF BibTeX XML Cite \textit{Y. Lei} et al., Appl. Anal. 97, No. 13, 2355--2376 (2018; Zbl 1397.76029) Full Text: DOI OpenURL
Bocci, Alessio; Mingari Scarpello, Giovanni; Ritelli, Daniele Unsteady roto-translational viscous flow: analytical solution to Navier-Stokes equations in cylindrical geometry. (English) Zbl 1401.35235 J. Geom. Symmetry Phys. 48, 1-21 (2018). MSC: 35Q30 33C10 76D05 76U05 PDF BibTeX XML Cite \textit{A. Bocci} et al., J. Geom. Symmetry Phys. 48, 1--21 (2018; Zbl 1401.35235) Full Text: DOI Euclid Link OpenURL
Hashimoto, T.; Yasuda, T.; Tanno, I.; Tanaka, Y.; Morinishi, K.; Satofuka, N. Multi-GPU parallel computation of unsteady incompressible flows using kinetically reduced local Navier-Stokes equations. (English) Zbl 1390.76571 Comput. Fluids 167, 215-220 (2018). MSC: 76M20 65M06 65Y10 76D05 PDF BibTeX XML Cite \textit{T. Hashimoto} et al., Comput. Fluids 167, 215--220 (2018; Zbl 1390.76571) Full Text: DOI OpenURL
Massa, F. C.; Noventa, G.; Lorini, M.; Bassi, F.; Ghidoni, A. High-order linearly implicit two-step peer schemes for the discontinuous Galerkin solution of the incompressible Navier-Stokes equations. (English) Zbl 1390.76338 Comput. Fluids 162, 55-71 (2018). MSC: 76M10 65M60 65L06 76D05 PDF BibTeX XML Cite \textit{F. C. Massa} et al., Comput. Fluids 162, 55--71 (2018; Zbl 1390.76338) Full Text: DOI OpenURL
Qiu, Hailong; Xue, Changfeng; Xue, Liang Low-order stabilized finite element methods for the unsteady Stokes/Navier-Stokes equations with friction boundary conditions. (English) Zbl 1448.65174 Math. Methods Appl. Sci. 41, No. 5, 2119-2139 (2018). MSC: 65M60 65M06 65N30 65M12 65M15 76D05 76D07 76D10 PDF BibTeX XML Cite \textit{H. Qiu} et al., Math. Methods Appl. Sci. 41, No. 5, 2119--2139 (2018; Zbl 1448.65174) Full Text: DOI OpenURL
Guo, Tongqing; Zhou, Di; Lu, Zhiliang A double-passage shape correction method for predictions of unsteady flow and aeroelasticity in turbomachinery. (English) Zbl 07407156 Adv. Appl. Math. Mech. 9, No. 4, 839-860 (2017). MSC: 65M08 76M12 42A38 76U05 74F10 74H15 76D05 76F65 PDF BibTeX XML Cite \textit{T. Guo} et al., Adv. Appl. Math. Mech. 9, No. 4, 839--860 (2017; Zbl 07407156) Full Text: DOI OpenURL
Chen, Gang; Feng, Minfu Analysis of solving Galerkin finite element methods with symmetric pressure stabilization for the unsteady Navier-Stokes equations using conforming equal order interpolation. (English) Zbl 07407131 Adv. Appl. Math. Mech. 9, No. 2, 362-377 (2017). MSC: 65M60 65N30 65M06 65M15 65D05 76D05 76M10 76M20 35Q30 PDF BibTeX XML Cite \textit{G. Chen} and \textit{M. Feng}, Adv. Appl. Math. Mech. 9, No. 2, 362--377 (2017; Zbl 07407131) Full Text: DOI OpenURL
Lee, Yongho Analytical solutions of channel and duct flows due to general pressure gradients. (English) Zbl 1446.76035 Appl. Math. Modelling 43, 279-286 (2017). MSC: 76-10 76D05 PDF BibTeX XML Cite \textit{Y. Lee}, Appl. Math. Modelling 43, 279--286 (2017; Zbl 1446.76035) Full Text: DOI OpenURL
Mathai, Mwangi Daniel; Stephen, Karanja; Mark, Kimathi A numerical investigation of the effect of curvature and Reynolds number to radial velocity in a curved porous pipe. (English) Zbl 1444.76108 Int. J. Adv. Appl. Math. Mech. 5, No. 1, 99-110 (2017). MSC: 76S05 76D05 35Q35 PDF BibTeX XML Cite \textit{M. D. Mathai} et al., Int. J. Adv. Appl. Math. Mech. 5, No. 1, 99--110 (2017; Zbl 1444.76108) Full Text: Link OpenURL
Badrinath, Sandeep; Bose, Chandan; Sarkar, Sunetra Identifying the route to chaos in the flow past a flapping airfoil. (English) Zbl 1408.76341 Eur. J. Mech., B, Fluids 66, 38-59 (2017). MSC: 76G25 37D45 76D05 37N10 PDF BibTeX XML Cite \textit{S. Badrinath} et al., Eur. J. Mech., B, Fluids 66, 38--59 (2017; Zbl 1408.76341) Full Text: DOI OpenURL
Falagkaris, E. J.; Ingram, D. M.; Viola, I. M.; Markakis, K. PROTEUS: a coupled iterative force-correction immersed-boundary multi-domain cascaded lattice Boltzmann solver. (English) Zbl 1397.65215 Comput. Math. Appl. 74, No. 10, 2348-2368 (2017). MSC: 65M75 65Y15 76M28 76D05 PDF BibTeX XML Cite \textit{E. J. Falagkaris} et al., Comput. Math. Appl. 74, No. 10, 2348--2368 (2017; Zbl 1397.65215) Full Text: DOI Link OpenURL
Fischer, Michael; Lindemann, Florian; Ulbrich, Michael; Ulbrich, Stefan Fréchet differentiability of unsteady incompressible Navier-Stokes flow with respect to domain variations of low regularity by using a general analytical framework. (English) Zbl 1373.76043 SIAM J. Control Optim. 55, No. 5, 3226-3257 (2017). MSC: 76D55 49J20 49J50 PDF BibTeX XML Cite \textit{M. Fischer} et al., SIAM J. Control Optim. 55, No. 5, 3226--3257 (2017; Zbl 1373.76043) Full Text: DOI OpenURL
Si, Zhiyong; Liu, Cui; Wang, Yunxia A semi-discrete defect correction finite element method for unsteady incompressible magnetohydrodynamics equations. (English) Zbl 1368.76016 Math. Methods Appl. Sci. 40, No. 11, 4179-4196 (2017). MSC: 76D05 76M10 76W05 35Q30 65M60 65N30 PDF BibTeX XML Cite \textit{Z. Si} et al., Math. Methods Appl. Sci. 40, No. 11, 4179--4196 (2017; Zbl 1368.76016) Full Text: DOI OpenURL
Mahapatra, T. R.; Sidui, S. Unsteady heat transfer in non-axisymmetric Homann stagnation-point flows. (English) Zbl 1365.76039 Z. Angew. Math. Phys. 68, No. 2, Paper No. 32, 11 p. (2017). MSC: 76D05 80A20 PDF BibTeX XML Cite \textit{T. R. Mahapatra} and \textit{S. Sidui}, Z. Angew. Math. Phys. 68, No. 2, Paper No. 32, 11 p. (2017; Zbl 1365.76039) Full Text: DOI OpenURL
Bulíček, Miroslav; Málek, Josef Internal flows of incompressible fluids subject to stick-slip boundary conditions. (English) Zbl 1365.35117 Vietnam J. Math. 45, No. 1-2, 207-220 (2017). MSC: 35Q35 76A05 76D03 35D30 35Q30 PDF BibTeX XML Cite \textit{M. Bulíček} and \textit{J. Málek}, Vietnam J. Math. 45, No. 1--2, 207--220 (2017; Zbl 1365.35117) Full Text: DOI OpenURL
Han, Zhong; Chen, Yong Symmetry analysis and exact solutions of the 2D unsteady incompressible boundary-layer equations. (English) Zbl 1357.76016 Commun. Theor. Phys. 67, No. 1, 1-8 (2017). MSC: 76D10 76D05 35C05 PDF BibTeX XML Cite \textit{Z. Han} and \textit{Y. Chen}, Commun. Theor. Phys. 67, No. 1, 1--8 (2017; Zbl 1357.76016) Full Text: DOI OpenURL
Issa, Leila Perturbation-based simplified models for unsteady incompressible microchannel flows. (English) Zbl 1465.76028 Appl. Math. Modelling 40, No. 9-10, 5301-5323 (2016). MSC: 76D05 76D10 PDF BibTeX XML Cite \textit{L. Issa}, Appl. Math. Modelling 40, No. 9--10, 5301--5323 (2016; Zbl 1465.76028) Full Text: DOI OpenURL
Nouveau, L.; Beaugendre, H.; Dobrzynski, C.; Abgrall, R.; Ricchiuto, M. An adaptive, residual based, splitting approach for the penalized Navier Stokes equations. (English) Zbl 1423.76267 Comput. Methods Appl. Mech. Eng. 303, 208-230 (2016). MSC: 76M10 76D05 65M60 65M50 76Nxx PDF BibTeX XML Cite \textit{L. Nouveau} et al., Comput. Methods Appl. Mech. Eng. 303, 208--230 (2016; Zbl 1423.76267) Full Text: DOI OpenURL
Yılmaz, Fikriye Semi-discrete a priori error analysis for the optimal control of the unsteady Navier-Stokes equations with variational multiscale stabilization. (English) Zbl 1410.49021 Appl. Math. Comput. 276, 127-142 (2016). MSC: 49K20 49M25 65M60 76D55 PDF BibTeX XML Cite \textit{F. Yılmaz}, Appl. Math. Comput. 276, 127--142 (2016; Zbl 1410.49021) Full Text: DOI OpenURL
Mondal, Tanmoy; Guha, Abhijit; Das, Manab Kumar Effect of bottom wall proximity on the unsteady flow structures of a combined turbulent wall jet and offset jet flow. (English) Zbl 1408.76151 Eur. J. Mech., B, Fluids 57, 101-114 (2016). MSC: 76D05 76F10 PDF BibTeX XML Cite \textit{T. Mondal} et al., Eur. J. Mech., B, Fluids 57, 101--114 (2016; Zbl 1408.76151) Full Text: DOI OpenURL
Yu, Meilin; Wang, Lai A high-order flux reconstruction/correction procedure via reconstruction formulation for unsteady incompressible flow on unstructured moving grids. (English) Zbl 1390.76378 Comput. Fluids 139, 161-173 (2016). MSC: 76M10 65M60 76D05 PDF BibTeX XML Cite \textit{M. Yu} and \textit{L. Wang}, Comput. Fluids 139, 161--173 (2016; Zbl 1390.76378) Full Text: DOI OpenURL
Agnaou, M.; Lasseux, D.; Ahmadi, A. From steady to unsteady laminar flow in model porous structures: an investigation of the first Hopf bifurcation. (English) Zbl 1390.76841 Comput. Fluids 136, 67-82 (2016); corrigendum ibid. 140, 512 (2016). MSC: 76S05 76D05 76M12 PDF BibTeX XML Cite \textit{M. Agnaou} et al., Comput. Fluids 136, 67--82 (2016; Zbl 1390.76841) Full Text: DOI HAL OpenURL
Pandit, Swapan K.; Karmakar, Hemanta An efficient implicit compact streamfunction velocity formulation of two dimensional flows. (English) Zbl 1397.76096 J. Sci. Comput. 68, No. 2, 653-688 (2016). MSC: 76M20 65M06 76D05 PDF BibTeX XML Cite \textit{S. K. Pandit} and \textit{H. Karmakar}, J. Sci. Comput. 68, No. 2, 653--688 (2016; Zbl 1397.76096) Full Text: DOI OpenURL
Ambethkar, Vusala; Kumar, Manoj; Srivastava, Mohit Kumar Numerical solutions of 2-D unsteady incompressible flow in a driven square cavity using streamfunction-vorticity formulation. (English) Zbl 1371.35190 Int. J. Appl. Math. 29, No. 6, 727-757 (2016). MSC: 35Q30 76D05 76D07 76M20 65M06 PDF BibTeX XML Cite \textit{V. Ambethkar} et al., Int. J. Appl. Math. 29, No. 6, 727--757 (2016; Zbl 1371.35190) Full Text: DOI OpenURL
Qin, Yanmei A new projection method for optimal control of Navier-Stokes equations. (Chinese. English summary) Zbl 1389.76017 J. Sichuan Univ., Nat. Sci. Ed. 53, No. 5, 973-979 (2016). MSC: 76D05 76D55 65M60 49J20 PDF BibTeX XML Cite \textit{Y. Qin}, J. Sichuan Univ., Nat. Sci. Ed. 53, No. 5, 973--979 (2016; Zbl 1389.76017) OpenURL
Feireisl, Eduard; Namlyeyeva, Yuliya; Nečasová, Šárka Homogenization of the evolutionary Navier-Stokes system. (English) Zbl 1338.35332 Manuscr. Math. 149, No. 1-2, 251-274 (2016). Reviewer: Gelu Paşa (Bucureşti) MSC: 35Q30 76D05 76M50 PDF BibTeX XML Cite \textit{E. Feireisl} et al., Manuscr. Math. 149, No. 1--2, 251--274 (2016; Zbl 1338.35332) Full Text: DOI OpenURL
Günther, Stefanie; Gauger, Nicolas R.; Wang, Qiqi Simultaneous single-step one-shot optimization with unsteady PDEs. (English) Zbl 1327.65123 J. Comput. Appl. Math. 294, 12-22 (2016). MSC: 65K10 49J20 49M25 35Q30 PDF BibTeX XML Cite \textit{S. Günther} et al., J. Comput. Appl. Math. 294, 12--22 (2016; Zbl 1327.65123) Full Text: DOI arXiv OpenURL
Chen, Gang; Feng, Minfu Explicitly uncoupled variational multiscale for characteristic finite element methods based on the unsteady Navier-Stokes equations with high Reynolds number. (English) Zbl 1443.76149 Appl. Math. Modelling 39, No. 14, 4202-4212 (2015). MSC: 76M10 65M60 76D05 PDF BibTeX XML Cite \textit{G. Chen} and \textit{M. Feng}, Appl. Math. Modelling 39, No. 14, 4202--4212 (2015; Zbl 1443.76149) Full Text: DOI OpenURL
Nandy, Samir Kumar; Mahapatra, Tapas Ray; Pop, Ioan Unsteady separated stagnation-point flow over a moving porous plate in the presence of a variable magnetic field. (English) Zbl 1408.76581 Eur. J. Mech., B, Fluids 53, 229-240 (2015). MSC: 76W05 76D05 76D10 PDF BibTeX XML Cite \textit{S. K. Nandy} et al., Eur. J. Mech., B, Fluids 53, 229--240 (2015; Zbl 1408.76581) Full Text: DOI OpenURL
Roşca, Natalia C.; Pop, Ioan Unsteady boundary layer flow over a permeable curved stretching/shrinking surface. (English) Zbl 1408.76195 Eur. J. Mech., B, Fluids 51, 61-67 (2015). MSC: 76D10 76D05 PDF BibTeX XML Cite \textit{N. C. Roşca} and \textit{I. Pop}, Eur. J. Mech., B, Fluids 51, 61--67 (2015; Zbl 1408.76195) Full Text: DOI OpenURL
Citro, Vincenzo; Luchini, Paolo Multiple-scale approximation of instabilities in unsteady boundary layers. (English) Zbl 1408.76189 Eur. J. Mech., B, Fluids 50, 1-8 (2015). MSC: 76D10 76D05 PDF BibTeX XML Cite \textit{V. Citro} and \textit{P. Luchini}, Eur. J. Mech., B, Fluids 50, 1--8 (2015; Zbl 1408.76189) Full Text: DOI OpenURL
Hashimoto, T.; Tanno, I.; Yasuda, T.; Tanaka, Y.; Morinishi, K.; Satofuka, N. Higher order numerical simulation of unsteady viscous incompressible flows using kinetically reduced local Navier-Stokes equations on a GPU. (English) Zbl 1390.76718 Comput. Fluids 110, 108-113 (2015). MSC: 76M28 76M22 76D05 PDF BibTeX XML Cite \textit{T. Hashimoto} et al., Comput. Fluids 110, 108--113 (2015; Zbl 1390.76718) Full Text: DOI OpenURL
Chen, Dexiang; Liu, Shuai; Xu, Zili; Hu, Busong Implicit least squares isogeometric method for unsteady flow. (Chinese. English summary) Zbl 1363.76048 Chin. J. Comput. Mech. 32, No. 5, 639-643 (2015). MSC: 76M20 65M06 76D05 PDF BibTeX XML Cite \textit{D. Chen} et al., Chin. J. Comput. Mech. 32, No. 5, 639--643 (2015; Zbl 1363.76048) OpenURL
Arkhipov, V. A.; Vasenin, I. M.; Tkachenko, A. S.; Usanina, A. S. Unsteady rise of a bubble in a viscous fluid at small Reynolds numbers. (English. Russian original) Zbl 1325.76185 Fluid Dyn. 50, No. 1, 79-86 (2015); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2015, No. 1, 86-94 (2015). MSC: 76T10 76D05 PDF BibTeX XML Cite \textit{V. A. Arkhipov} et al., Fluid Dyn. 50, No. 1, 79--86 (2015; Zbl 1325.76185); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2015, No. 1, 86--94 (2015) Full Text: DOI OpenURL
El-Aziz, Mohamed Abd; Nabil, Tamer Effect of time-dependent heat source/sink on slip flow and heat transfer from a stretching surface with homotopy analysis method. (English) Zbl 1329.76055 Meccanica 50, No. 6, 1467-1480 (2015). MSC: 76D05 76M25 80A20 PDF BibTeX XML Cite \textit{M. A. El-Aziz} and \textit{T. Nabil}, Meccanica 50, No. 6, 1467--1480 (2015; Zbl 1329.76055) Full Text: DOI OpenURL
Kazemi-Kamyab, V.; van Zuijlen, A. H.; Bijl, H. Analysis and application of high order implicit Runge-Kutta schemes for unsteady conjugate heat transfer: a strongly-coupled approach. (English) Zbl 1349.76617 J. Comput. Phys. 272, 471-486 (2014). MSC: 76M25 65M20 65L06 76D05 80A20 PDF BibTeX XML Cite \textit{V. Kazemi-Kamyab} et al., J. Comput. Phys. 272, 471--486 (2014; Zbl 1349.76617) Full Text: DOI OpenURL
Chen, Gang; Feng, Minfu; Zhou, Hong Local projection stabilized method on unsteady Navier-Stokes equations with high Reynolds number using equal order interpolation. (English) Zbl 1335.76033 Appl. Math. Comput. 243, 465-481 (2014). MSC: 76M10 65M60 76D05 PDF BibTeX XML Cite \textit{G. Chen} et al., Appl. Math. Comput. 243, 465--481 (2014; Zbl 1335.76033) Full Text: DOI OpenURL
Sataprahm, C.; Luadsong, A. The meshless local Petrov-Galerkin method for simulating unsteady incompressible fluid flow. (English) Zbl 1426.76560 J. Egypt. Math. Soc. 22, No. 3, 501-510 (2014). MSC: 76M25 76M20 76D05 PDF BibTeX XML Cite \textit{C. Sataprahm} and \textit{A. Luadsong}, J. Egypt. Math. Soc. 22, No. 3, 501--510 (2014; Zbl 1426.76560) Full Text: DOI OpenURL
Chen, Rongliang; Wu, Yuqi; Yan, Zhengzheng; Zhao, Yubo; Cai, Xiao-Chuan A parallel domain decomposition method for 3D unsteady incompressible flows at high Reynolds number. (English) Zbl 1298.76057 J. Sci. Comput. 58, No. 2, 275-289 (2014). MSC: 76D05 76F65 65M55 65Y05 PDF BibTeX XML Cite \textit{R. Chen} et al., J. Sci. Comput. 58, No. 2, 275--289 (2014; Zbl 1298.76057) Full Text: DOI OpenURL
Jian, Yongjun; Su, Jie; Chang, Long; Liu, Quansheng; He, Guowei Transient electroosmotic flow of general Maxwell fluids through a slit microchannel. (English) Zbl 1302.76011 Z. Angew. Math. Phys. 65, No. 3, 435-447 (2014). MSC: 76A05 76D05 76W05 PDF BibTeX XML Cite \textit{Y. Jian} et al., Z. Angew. Math. Phys. 65, No. 3, 435--447 (2014; Zbl 1302.76011) Full Text: DOI Link OpenURL
Zhang, Tong; Yang, Jinhua A two-level finite volume method for the unsteady Navier-Stokes equations based on two local Gauss integrations. (English) Zbl 1297.35174 J. Comput. Appl. Math. 263, 377-391 (2014). Reviewer: Nicolae Pop (Baia Mare) MSC: 35Q30 65N30 76D05 76M12 35B45 PDF BibTeX XML Cite \textit{T. Zhang} and \textit{J. Yang}, J. Comput. Appl. Math. 263, 377--391 (2014; Zbl 1297.35174) Full Text: DOI OpenURL
Boukrouche, Mahdi; Boussetouan, Imane; Paoli, Laetitia Non-isothermal Navier-Stokes system with mixed boundary conditions and friction law: uniqueness and regularity properties. (English) Zbl 1452.76042 Nonlinear Anal., Theory Methods Appl., Ser. A, Theory Methods 102, 168-185 (2014). MSC: 76D05 76D03 35Q30 35R35 35B45 PDF BibTeX XML Cite \textit{M. Boukrouche} et al., Nonlinear Anal., Theory Methods Appl., Ser. A, Theory Methods 102, 168--185 (2014; Zbl 1452.76042) Full Text: DOI OpenURL
Zhou, C. H.; Ai, J. Q. Mesh adaptation for simulation of unsteady flow with moving immersed boundaries. (English) Zbl 1455.76101 Int. J. Numer. Methods Fluids 72, No. 4, 453-477 (2013). MSC: 76M10 65M50 65M60 76D05 PDF BibTeX XML Cite \textit{C. H. Zhou} and \textit{J. Q. Ai}, Int. J. Numer. Methods Fluids 72, No. 4, 453--477 (2013; Zbl 1455.76101) Full Text: DOI OpenURL
Yang, Haijian; Cai, Xiao-Chuan Parallel fully implicit two-grid methods for distributed control of unsteady incompressible flows. (English) Zbl 1455.76050 Int. J. Numer. Methods Fluids 72, No. 1, 1-21 (2013). MSC: 76D55 76D05 76M20 PDF BibTeX XML Cite \textit{H. Yang} and \textit{X.-C. Cai}, Int. J. Numer. Methods Fluids 72, No. 1, 1--21 (2013; Zbl 1455.76050) Full Text: DOI OpenURL
Deng, Yongbo; Zhang, Ping; Liu, Yongshun; Wu, Yihui; Liu, Zhenyu Optimization of unsteady incompressible Navier-Stokes flows using variational level set method. (English) Zbl 1430.76111 Int. J. Numer. Methods Fluids 71, No. 12, 1475-1493 (2013). MSC: 76D05 76D55 PDF BibTeX XML Cite \textit{Y. Deng} et al., Int. J. Numer. Methods Fluids 71, No. 12, 1475--1493 (2013; Zbl 1430.76111) Full Text: DOI OpenURL
Hashimoto, Tomohisa; Tanno, Itaru; Tanaka, Yoshihiro; Morinishi, Koji; Satofuka, Nobuyuki Simulation of doubly periodic shear layers using kinetically reduced local Navier-Stokes equations on a GPU. (English) Zbl 1391.76101 Comput. Fluids 88, 715-718 (2013). MSC: 76D05 65Y10 76M28 PDF BibTeX XML Cite \textit{T. Hashimoto} et al., Comput. Fluids 88, 715--718 (2013; Zbl 1391.76101) Full Text: DOI OpenURL
Saha, Arun K. Unsteady flow past a finite square cylinder mounted on a wall at low Reynolds number. (English) Zbl 1391.76491 Comput. Fluids 88, 599-615 (2013). MSC: 76M20 76F65 76D05 65M06 PDF BibTeX XML Cite \textit{A. K. Saha}, Comput. Fluids 88, 599--615 (2013; Zbl 1391.76491) Full Text: DOI OpenURL
Kast, Steven M.; Fidkowski, Krzysztof J. Output-based mesh adaptation for high order Navier-Stokes simulations on deformable domains. (English) Zbl 1349.76058 J. Comput. Phys. 252, 468-494 (2013). MSC: 76D05 76M10 65M50 65M60 PDF BibTeX XML Cite \textit{S. M. Kast} and \textit{K. J. Fidkowski}, J. Comput. Phys. 252, 468--494 (2013; Zbl 1349.76058) Full Text: DOI OpenURL
Sen, Shuvam A new family of (5,5)CC-4OC schemes applicable for unsteady Navier-Stokes equations. (English) Zbl 1349.76531 J. Comput. Phys. 251, 251-271 (2013). MSC: 76M20 65M06 76D05 PDF BibTeX XML Cite \textit{S. Sen}, J. Comput. Phys. 251, 251--271 (2013; Zbl 1349.76531) Full Text: DOI OpenURL
Zhuo, Congshan; Zhong, Chengwen; Cao, Jun Filter-matrix lattice Boltzmann simulation of lid-driven deep-cavity flows. II: Flow bifurcation. (English) Zbl 1383.76390 Comput. Math. Appl. 65, No. 12, 1883-1893 (2013). MSC: 76M28 76D05 PDF BibTeX XML Cite \textit{C. Zhuo} et al., Comput. Math. Appl. 65, No. 12, 1883--1893 (2013; Zbl 1383.76390) Full Text: DOI OpenURL
Jiang, Shidong; Kropinski, Mary Catherine A.; Quaife, Bryan D. Second kind integral equation formulation for the modified biharmonic equation and its applications. (English) Zbl 1427.76206 J. Comput. Phys. 249, 113-126 (2013). MSC: 76M99 76D05 31A30 PDF BibTeX XML Cite \textit{S. Jiang} et al., J. Comput. Phys. 249, 113--126 (2013; Zbl 1427.76206) Full Text: DOI OpenURL
Abbasi, R.; Ashrafizadeh, A.; Shadaram, A. A comparative study of finite volume pressure-correction projection methods on co-located grid arrangements. (English) Zbl 1285.76021 Comput. Fluids 81, 68-84 (2013). MSC: 76M12 76D05 65M08 PDF BibTeX XML Cite \textit{R. Abbasi} et al., Comput. Fluids 81, 68--84 (2013; Zbl 1285.76021) Full Text: DOI OpenURL
Birken, Philipp; Gassner, Gregor; Haas, Mark; Munz, Claus-Dieter Preconditioning for modal discontinuous Galerkin methods for unsteady 3D Navier-Stokes equations. (English) Zbl 1426.76520 J. Comput. Phys. 240, 20-35 (2013). MSC: 76M25 76D05 PDF BibTeX XML Cite \textit{P. Birken} et al., J. Comput. Phys. 240, 20--35 (2013; Zbl 1426.76520) Full Text: DOI OpenURL
Zhang, Yang; Zhou, Chunhua; Ai, Junqiang A finite volume immersed boundary method and its extension to simulate 3-D flows with complex moving boundaries. (Chinese. English summary) Zbl 1299.76196 J. Nanjing Univ. Aeronaut. Astronaut. 45, No. 3, 322-328 (2013). MSC: 76M25 76D05 PDF BibTeX XML Cite \textit{Y. Zhang} et al., J. Nanjing Univ. Aeronaut. Astronaut. 45, No. 3, 322--328 (2013; Zbl 1299.76196) OpenURL
Breit, D.; Diening, L.; Schwarzacher, S. Solenoidal Lipschitz truncation for parabolic PDEs. (English) Zbl 1309.76024 Math. Models Methods Appl. Sci. 23, No. 14, 2671-2700 (2013). MSC: 76B03 35Q30 35J60 26B35 76D05 PDF BibTeX XML Cite \textit{D. Breit} et al., Math. Models Methods Appl. Sci. 23, No. 14, 2671--2700 (2013; Zbl 1309.76024) Full Text: DOI arXiv OpenURL
Gaifullin, A. M.; Zubtsov, A. V. Asymptotic structure of unsteady flow over a semi-infinite plate with a moving surface. (English. Russian original) Zbl 1262.76021 Fluid Dyn. 48, No. 1, 77-88 (2013); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2013, No. 1, 77-88 (2013). MSC: 76D05 76M45 PDF BibTeX XML Cite \textit{A. M. Gaifullin} and \textit{A. V. Zubtsov}, Fluid Dyn. 48, No. 1, 77--88 (2013; Zbl 1262.76021); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2013, No. 1, 77--88 (2013) Full Text: DOI OpenURL
Zhang, JinBai; Qian, ZhanSen Implicit eighth-order central compact scheme for the numerical simulation of steady and unsteady incompressible Navier-Stokes equations. (English) Zbl 07506653 Int. J. Comput. Fluid Dyn. 26, No. 4, 247-261 (2012). MSC: 76-XX 65-XX PDF BibTeX XML Cite \textit{J. Zhang} and \textit{Z. Qian}, Int. J. Comput. Fluid Dyn. 26, No. 4, 247--261 (2012; Zbl 07506653) Full Text: DOI OpenURL
Sohankar, A. A numerical investigation of the flow over a pair of identical square cylinders in a tandem arrangement. (English) Zbl 1412.65156 Int. J. Numer. Methods Fluids 70, No. 10, 1244-1257 (2012). MSC: 65M60 76D05 76M10 PDF BibTeX XML Cite \textit{A. Sohankar}, Int. J. Numer. Methods Fluids 70, No. 10, 1244--1257 (2012; Zbl 1412.65156) Full Text: DOI OpenURL
Sengupta, Tapan K.; Bhumkar, Yogesh G.; Sengupta, Soumyo Dynamics and instability of a shielded vortex in close proximity of a wall. (English) Zbl 1365.76041 Comput. Fluids 70, 166-175 (2012). MSC: 76D05 76D17 76D10 PDF BibTeX XML Cite \textit{T. K. Sengupta} et al., Comput. Fluids 70, 166--175 (2012; Zbl 1365.76041) Full Text: DOI OpenURL
Ngo-Cong, D.; Mai-Duy, N.; Karunasena, W.; Tran-Cong, T. Local moving least square – one-dimensional IRBFN technique. II: Unsteady incompressible viscous flows. (English) Zbl 1356.76064 CMES, Comput. Model. Eng. Sci. 83, No. 3, 311-352 (2012). MSC: 76D05 76M10 PDF BibTeX XML Cite \textit{D. Ngo-Cong} et al., CMES, Comput. Model. Eng. Sci. 83, No. 3, 311--352 (2012; Zbl 1356.76064) Full Text: DOI OpenURL
Huang, Hua; Sun, Mao Forward flight of a model butterfly: simulation by equations of motion coupled with the Navier-Stokes equations. (English) Zbl 1345.76129 Acta Mech. Sin. 28, No. 6, 1590-1601 (2012). MSC: 76Z10 76G25 76D05 PDF BibTeX XML Cite \textit{H. Huang} and \textit{M. Sun}, Acta Mech. Sin. 28, No. 6, 1590--1601 (2012; Zbl 1345.76129) Full Text: DOI OpenURL
Louda, Petr; Kozel, Karel; Příhoda, Jaromír On using artificial compressibility method for solving turbulent flows. (English) Zbl 1313.76027 Brandts, J. (ed.) et al., Proceedings of the international conference ‘Applications of mathematics’, Prague, Czech Republic, May 2–5, 2012. In honor of the 60th birthday of Michal Křížek. Prague: Academy of Sciences of the Czech Republic, Institute of Mathematics (ISBN 978-80-85823-60-8/pbk). 163-172 (2012). Reviewer: Radka Keslerová (Praha) MSC: 76D05 76M12 65M08 76F25 PDF BibTeX XML Cite \textit{P. Louda} et al., in: Proceedings of the international conference `Applications of mathematics', Prague, Czech Republic, May 2--5, 2012. In honor of the 60th birthday of Michal Křížek. Prague: Academy of Sciences of the Czech Republic, Institute of Mathematics. 163--172 (2012; Zbl 1313.76027) Full Text: Link OpenURL
Tulapurkara, E. G.; Ju, M. G.; Sohn, C. H.; Gowda, B. H. L. A numerical study on the mechanism of reverse flow in a channel without obstruction at the entry. (English) Zbl 1292.76034 Prog. Comput. Fluid Dyn. 12, No. 1, 37-45 (2012). MSC: 76D05 76M20 PDF BibTeX XML Cite \textit{E. G. Tulapurkara} et al., Prog. Comput. Fluid Dyn. 12, No. 1, 37--45 (2012; Zbl 1292.76034) Full Text: DOI OpenURL
Munawar, Sufian; Mehmood, Ahmer; Ali, Asif Three-dimensional squeezing flow in a rotating channel of lower stretching porous wall. (English) Zbl 1268.76072 Comput. Math. Appl. 64, No. 6, 1575-1586 (2012). MSC: 76W05 76M25 76S05 65M99 76D05 PDF BibTeX XML Cite \textit{S. Munawar} et al., Comput. Math. Appl. 64, No. 6, 1575--1586 (2012; Zbl 1268.76072) Full Text: DOI OpenURL
Pu, Saihu; Chen, Hongquan A gridless method for unsteady viscous flows. (English) Zbl 1274.76192 Trans. Nanjing Univ. Aeronaut. Astronaut. 29, No. 1, 1-8 (2012). MSC: 76D05 76M25 PDF BibTeX XML Cite \textit{S. Pu} and \textit{H. Chen}, Trans. Nanjing Univ. Aeronaut. Astronaut. 29, No. 1, 1--8 (2012; Zbl 1274.76192) OpenURL
Gu, Ning; Lu, zhiliang; Guo, Tongqing Simulation of viscous flows around a moving airfoil by field velocity method with viscous flux correction. (English) Zbl 1262.76070 Adv. Appl. Math. Mech. 4, No. 3, 294-310 (2012). MSC: 76M25 65Z05 76D05 PDF BibTeX XML Cite \textit{N. Gu} et al., Adv. Appl. Math. Mech. 4, No. 3, 294--310 (2012; Zbl 1262.76070) Full Text: DOI OpenURL
Fang, Tiegang; Tao, Hua Unsteady viscous flow over a rotating stretchable disk with deceleration. (English) Zbl 1417.76016 Commun. Nonlinear Sci. Numer. Simul. 17, No. 12, 5064-5072 (2012). MSC: 76D05 PDF BibTeX XML Cite \textit{T. Fang} and \textit{H. Tao}, Commun. Nonlinear Sci. Numer. Simul. 17, No. 12, 5064--5072 (2012; Zbl 1417.76016) Full Text: DOI OpenURL
Magyari, Eugen; Weidman, Patrick D. Comment on “Unsteady stagnation-point flow over a plate moving along the direction of flow impingement”. (English) Zbl 1329.76062 Int. J. Heat Mass Transfer 55, No. 4, 1423-1424 (2012). MSC: 76D05 35Q30 PDF BibTeX XML Cite \textit{E. Magyari} and \textit{P. D. Weidman}, Int. J. Heat Mass Transfer 55, No. 4, 1423--1424 (2012; Zbl 1329.76062) Full Text: DOI OpenURL
Smith, R.; Xia, G.; Anderson, W.; Merkle, C. L. Computational studies of the effects of oxidiser injector length on combustion instability. (English) Zbl 1264.80027 Combust. Theory Model. 16, No. 2, 341-368 (2012). MSC: 80A25 76D05 76F65 80-05 76-05 80M12 76M12 PDF BibTeX XML Cite \textit{R. Smith} et al., Combust. Theory Model. 16, No. 2, 341--368 (2012; Zbl 1264.80027) Full Text: DOI OpenURL
Choi, Minsuk; Lee, Sang-Youp; Kim, Yong-Hwan On the flow around a vibrating cantilever pair with different phase angles. (English) Zbl 1258.76054 Eur. J. Mech., B, Fluids 34, 146-157 (2012). MSC: 76D05 76M12 76-05 76F10 PDF BibTeX XML Cite \textit{M. Choi} et al., Eur. J. Mech., B, Fluids 34, 146--157 (2012; Zbl 1258.76054) Full Text: DOI OpenURL
Zhu, Baoshan; Wang, Hong; Wang, Longbu; Cao, Shuliang Three-dimensional vortex simulation of unsteady flow in hydraulic turbines. (English) Zbl 1253.76072 Int. J. Numer. Methods Fluids 69, No. 10, 1679-1700 (2012); corrigendum ibid. 74, No. 2, 152 (2014). MSC: 76M15 76D05 PDF BibTeX XML Cite \textit{B. Zhu} et al., Int. J. Numer. Methods Fluids 69, No. 10, 1679--1700 (2012; Zbl 1253.76072) Full Text: DOI OpenURL
Qian, Zhansen; Zhang, Jingbai Implicit preconditioned high-order compact scheme for the simulation of the three-dimensional incompressible Navier-Stokes equations with pseudo-compressibility method. (English) Zbl 1253.76081 Int. J. Numer. Methods Fluids 69, No. 7, 1165-1185 (2012). MSC: 76M20 76D05 65M06 65F08 65M22 PDF BibTeX XML Cite \textit{Z. Qian} and \textit{J. Zhang}, Int. J. Numer. Methods Fluids 69, No. 7, 1165--1185 (2012; Zbl 1253.76081) Full Text: DOI OpenURL
Yang, Haijian; Prudencio, Ernesto E.; Cai, Xiao-Chuan Fully implicit Lagrange-Newton-Krylov-Schwarz algorithms for boundary control of unsteady incompressible flows. (English) Zbl 1253.65145 Int. J. Numer. Methods Eng. 91, No. 6, 644-665 (2012). MSC: 65M55 76D55 49M25 65Y05 PDF BibTeX XML Cite \textit{H. Yang} et al., Int. J. Numer. Methods Eng. 91, No. 6, 644--665 (2012; Zbl 1253.65145) Full Text: DOI OpenURL
Özkaya, Emre; Nemili, Anil; Gauger, Nicolas R. Application of automatic differentiation to an incompressible URANS solver. (English) Zbl 1422.76060 Forth, Shaun (ed.) et al., Recent advances in algorithmic differentiation. Selected papers based on the presentations at the 6th international conference on automatic differentiation (AD2012), Fort Collins, CO, USA, July 23–27, 2012. Berlin: Springer. Lect. Notes Comput. Sci. Eng. 87, 35-45 (2012). MSC: 76D55 76D05 76M25 PDF BibTeX XML Cite \textit{E. Özkaya} et al., Lect. Notes Comput. Sci. Eng. 87, 35--45 (2012; Zbl 1422.76060) Full Text: DOI OpenURL
Fang, Tiegang; Zhang, Ji; Zhong, Yongfang Note on unsteady viscous flow on the outside of an expanding or contracting cylinder. (English) Zbl 1348.76051 Commun. Nonlinear Sci. Numer. Simul. 17, No. 8, 3124-3128 (2012). MSC: 76D05 35C05 PDF BibTeX XML Cite \textit{T. Fang} et al., Commun. Nonlinear Sci. Numer. Simul. 17, No. 8, 3124--3128 (2012; Zbl 1348.76051) Full Text: DOI OpenURL
Guermond, J. L.; Minev, P. D. Start-up flow in a three-dimensional lid-driven cavity by means of a massively parallel direction splitting algorithm. (English) Zbl 1237.76027 Int. J. Numer. Methods Fluids 68, No. 7, 856-871 (2012). MSC: 76D05 76M25 65Y05 PDF BibTeX XML Cite \textit{J. L. Guermond} and \textit{P. D. Minev}, Int. J. Numer. Methods Fluids 68, No. 7, 856--871 (2012; Zbl 1237.76027) Full Text: DOI OpenURL
Huang, Cheng; Zhou, Dai; Bao, Yan A semi-implicit three-step method based on SUPG finite element formulation for flow in lid driven cavities with different geometries. (English) Zbl 1400.76040 J. Zhejiang Univ., Sci. A 12, No. 1, 33-45 (2011). MSC: 76M10 76D05 65M60 PDF BibTeX XML Cite \textit{C. Huang} et al., J. Zhejiang Univ., Sci. A 12, No. 1, 33--45 (2011; Zbl 1400.76040) Full Text: DOI OpenURL
Tatsumi, Kazuya; Kuroki, Ryo; Nakamura, Masahiko; Nakabe, Kazuyoshi Numerical investigation on fluid flow and heat transfer characteristics in a peristaltic micropump. (English) Zbl 1278.76020 Prog. Comput. Fluid Dyn. 11, No. 3-4, 160-168 (2011). MSC: 76D05 76M25 80A20 PDF BibTeX XML Cite \textit{K. Tatsumi} et al., Prog. Comput. Fluid Dyn. 11, No. 3--4, 160--168 (2011; Zbl 1278.76020) Full Text: DOI OpenURL
Gargano, F.; Sammartino, M.; Sciacca, V. High Reynolds number Navier-Stokes solutions and boundary layer separation induced by a rectilinear vortex. (English) Zbl 1271.76066 Comput. Fluids 52, 73-91 (2011). MSC: 76D10 76D05 76M20 PDF BibTeX XML Cite \textit{F. Gargano} et al., Comput. Fluids 52, 73--91 (2011; Zbl 1271.76066) Full Text: DOI arXiv Link OpenURL
Suzuki, Kosuke; Inamuro, Takaji Effect of internal mass in the simulation of a moving body by the immersed boundary method. (English) Zbl 1271.76257 Comput. Fluids 49, No. 1, 173-187 (2011). MSC: 76M25 76D05 70E99 PDF BibTeX XML Cite \textit{K. Suzuki} and \textit{T. Inamuro}, Comput. Fluids 49, No. 1, 173--187 (2011; Zbl 1271.76257) Full Text: DOI Link OpenURL
Wang, L.; Pitsch, H.; Yamamoto, K.; Orii, A. An efficient approach of unsteady flamelet modeling of a cross-flow-jet combustion system using LES. (English) Zbl 1263.80019 Combust. Theory Model. 15, No. 6, 849-862 (2011). MSC: 80A25 76F65 76D25 76D05 80A32 76M20 80M20 PDF BibTeX XML Cite \textit{L. Wang} et al., Combust. Theory Model. 15, No. 6, 849--862 (2011; Zbl 1263.80019) Full Text: DOI OpenURL
Khaledi, Hatef A.; Andersson, Helge I. On vortex shedding from a hexagonal cylinder. (English) Zbl 1254.76073 Phys. Lett., A 375, No. 45, 4007-4021 (2011). MSC: 76D17 76D25 76D05 76D07 76M23 PDF BibTeX XML Cite \textit{H. A. Khaledi} and \textit{H. I. Andersson}, Phys. Lett., A 375, No. 45, 4007--4021 (2011; Zbl 1254.76073) Full Text: DOI Link OpenURL
Nicolás, Alfredo; Báez, Elsa; Bermúdez, Blanca From cat’s eyes to disjoint multicellular natural convection flow in tall tilted cavities. (English) Zbl 1250.76154 Phys. Lett., A 375, No. 28-29, 2683-2688 (2011). MSC: 76R05 76D05 76D17 PDF BibTeX XML Cite \textit{A. Nicolás} et al., Phys. Lett., A 375, No. 28--29, 2683--2688 (2011; Zbl 1250.76154) Full Text: DOI OpenURL