Di Renzo, M.; Urzay, J. Direct numerical simulation of a hypersonic transitional boundary layer at suborbital enthalpies. (English) Zbl 07315142 J. Fluid Mech. 912, Article ID A29, 36 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{M. Di Renzo} and \textit{J. Urzay}, J. Fluid Mech. 912, Article ID A29, 36 p. (2021; Zbl 07315142) Full Text: DOI
Zhu, Yiding; Gu, Dingwei; Zhu, Wenkai; Chen, Shiyi; Lee, Cunbiao; Oran, Elaine S. Dilatational-wave-induced aerodynamic cooling in transitional hypersonic boundary layers. (English) Zbl 07309325 J. Fluid Mech. 911, Article ID A36, 21 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{Y. Zhu} et al., J. Fluid Mech. 911, Article ID A36, 21 p. (2021; Zbl 07309325) Full Text: DOI
Janardhanraj, S.; Abhishek, K.; Jagadeesh, G. Insights into the shockwave attenuation in miniature shock tubes. (English) Zbl 07298869 J. Fluid Mech. 910, Article ID A3, 31 p. (2021). MSC: 76 PDF BibTeX XML Cite \textit{S. Janardhanraj} et al., J. Fluid Mech. 910, Article ID A3, 31 p. (2021; Zbl 07298869) Full Text: DOI
Edgington-Mitchell, Daniel; Weightman, Joel; Lock, Samuel; Kirby, Rhiannon; Nair, Vineeth; Soria, Julio; Honnery, Damon The generation of screech tones by shock leakage. (English) Zbl 07298349 J. Fluid Mech. 908, Article ID A46, 33 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{D. Edgington-Mitchell} et al., J. Fluid Mech. 908, Article ID A46, 33 p. (2020; Zbl 07298349) Full Text: DOI
Leonard, Michael D.; Narayanaswamy, V. Investigation of shock dynamics in an axisymmetric inlet/isolator with attached boundary layers. (English) Zbl 07298346 J. Fluid Mech. 908, Article ID A42, 27 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{M. D. Leonard} and \textit{V. Narayanaswamy}, J. Fluid Mech. 908, Article ID A42, 27 p. (2020; Zbl 07298346) Full Text: DOI
Chang, Eric Won Keun; Chan, Wilson Y. K.; Mcintyre, Timothy J.; Veeraragavan, Ananthanarayanan Hypersonic shock impingement on a heated flat plate at Mach 7 flight enthalpy. (English) Zbl 07298097 J. Fluid Mech. 908, Article ID R1, 13 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{E. W. K. Chang} et al., J. Fluid Mech. 908, Article ID R1, 13 p. (2020; Zbl 07298097) Full Text: DOI
Lugrin, Mathieu; Beneddine, Samir; Leclercq, Colin; Garnier, Eric; Bur, Reynald Transition scenario in hypersonic axisymmetrical compression ramp flow. (English) Zbl 07297487 J. Fluid Mech. 907, Article ID A6, 40 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{M. Lugrin} et al., J. Fluid Mech. 907, Article ID A6, 40 p. (2020; Zbl 07297487) Full Text: DOI
Butler, C. S.; Whalen, T. J.; Sousa, C. E.; Laurence, S. J. Dynamics of a spherical body shedding from a hypersonic ramp. II: Viscous flow. (English) Zbl 07297481 J. Fluid Mech. 906, Article ID A29, 32 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. S. Butler} et al., J. Fluid Mech. 906, Article ID A29, 32 p. (2020; Zbl 07297481) Full Text: DOI
Sousa, C. E.; Deiterding, R.; Laurence, S. J. Dynamics of a spherical body shedding from a hypersonic ramp. I: Inviscid flow. (English) Zbl 07297480 J. Fluid Mech. 906, Article ID A28, 30 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. E. Sousa} et al., J. Fluid Mech. 906, Article ID A28, 30 p. (2020; Zbl 07297480) Full Text: DOI
Karami, Shahram; Edgington-Mitchell, Daniel; Theofilis, Vassilis; Soria, Julio Characteristics of acoustic and hydrodynamic waves in under-expanded supersonic impinging jets. (English) Zbl 07274696 J. Fluid Mech. 905, Article ID A34, 33 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. Karami} et al., J. Fluid Mech. 905, Article ID A34, 33 p. (2020; Zbl 07274696) Full Text: DOI
Ramjatan, Sahadeo; Lani, A.; Boccelli, S.; Van Hove, B.; Karatekin, Ö.; Magin, T.; Thoemel, J. Blackout analysis of Mars entry missions. (English) Zbl 07270907 J. Fluid Mech. 904, Article ID A26, 37 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. Ramjatan} et al., J. Fluid Mech. 904, Article ID A26, 37 p. (2020; Zbl 07270907) Full Text: DOI
Dorschner, Benedikt; Biasiori-Poulanges, Luc; Schmidmayer, Kevin; El-Rabii, Hazem; Colonius, Tim On the formation and recurrent shedding of ligaments in droplet aerobreakup. (English) Zbl 07270761 J. Fluid Mech. 904, Article ID A20, 28 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{B. Dorschner} et al., J. Fluid Mech. 904, Article ID A20, 28 p. (2020; Zbl 07270761) Full Text: DOI
Hooshanginejad, Alireza; Dutcher, Cari; Shelley, Michael J.; Lee, Sungyon Droplet breakup in a stagnation-point flow. (English) Zbl 07256857 J. Fluid Mech. 901, Article ID A19, 20 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{A. Hooshanginejad} et al., J. Fluid Mech. 901, Article ID A19, 20 p. (2020; Zbl 07256857) Full Text: DOI
Ruban, A. I.; Djehizian, A.; Kirsten, J.; Kravtsova, M. A. On quasi-steady boundary-layer separation in supersonic flow. II: Downstream moving separation point. (English) Zbl 07235775 J. Fluid Mech. 900, Article ID A9, 32 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{A. I. Ruban} et al., J. Fluid Mech. 900, Article ID A9, 32 p. (2020; Zbl 07235775) Full Text: DOI
Xue, Longsheng; Schrijer, Ferry F. J.; Van Oudheusden, Bas W.; Wang, Chengpeng; Shi, Zhiwei; Cheng, Keming Theoretical study on regular reflection of shock wave-boundary layer interactions. (English) Zbl 07235491 J. Fluid Mech. 899, Article ID A30, 20 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{L. Xue} et al., J. Fluid Mech. 899, Article ID A30, 20 p. (2020; Zbl 07235491) Full Text: DOI
Fang, Jian; Zheltovodov, Aleksandr A.; Yao, Yufeng; Moulinec, Charles; Emerson, David R. On the turbulence amplification in shock-wave/turbulent boundary layer interaction. (English) Zbl 07213733 J. Fluid Mech. 897, Article ID A32, 37 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J. Fang} et al., J. Fluid Mech. 897, Article ID A32, 37 p. (2020; Zbl 07213733) Full Text: DOI
Hao, Jiaao; Wen, Chih-Yung Hypersonic flow over spherically blunted double cones. (English) Zbl 07210544 J. Fluid Mech. 896, Article ID A26, 21 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J. Hao} and \textit{C.-Y. Wen}, J. Fluid Mech. 896, Article ID A26, 21 p. (2020; Zbl 07210544) Full Text: DOI
Pickering, Ethan; Rigas, Georgios; Nogueira, Petrônio A. S.; Cavalieri, André V. G.; Schmidt, Oliver T.; Colonius, Tim Lift-up, Kelvin-Helmholtz and Orr mechanisms in turbulent jets. (English) Zbl 07207848 J. Fluid Mech. 896, Article ID A2, 36 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{E. Pickering} et al., J. Fluid Mech. 896, Article ID A2, 36 p. (2020; Zbl 07207848) Full Text: DOI
Athira, C. M.; Rajesh, G.; Mohanan, Sreelal; Parthasarathy, Aadhy Flow interactions on supersonic projectiles in transitional ballistic regimes. (English) Zbl 07201530 J. Fluid Mech. 894, Article ID A27, 35 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. M. Athira} et al., J. Fluid Mech. 894, Article ID A27, 35 p. (2020; Zbl 07201530) Full Text: DOI
Paredes, Pedro; Choudhari, Meelan M.; Li, Fei Mechanism for frustum transition over blunt cones at hypersonic speeds. (English) Zbl 07201525 J. Fluid Mech. 894, Article ID A22, 21 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{P. Paredes} et al., J. Fluid Mech. 894, Article ID A22, 21 p. (2020; Zbl 07201525) Full Text: DOI
Sugawara, S.; Nakao, S.; Miyazato, Y.; Ishino, Y.; Miki, K. Three-dimensional reconstruction of a microjet with a Mach disk by Mach-Zehnder interferometers. (English) Zbl 07195177 J. Fluid Mech. 893, Article ID A25, 26 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. Sugawara} et al., J. Fluid Mech. 893, Article ID A25, 26 p. (2020; Zbl 07195177) Full Text: DOI
Gloerfelt, Xavier; Robinet, J.-C.; Sciacovelli, L.; Cinnella, P.; Grasso, F. Dense-gas effects on compressible boundary-layer stability. (English) Zbl 07193507 J. Fluid Mech. 893, Article ID A19, 41 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{X. Gloerfelt} et al., J. Fluid Mech. 893, Article ID A19, 41 p. (2020; Zbl 07193507) Full Text: DOI
Shi, Chongguang; Han, Weiqiang; Deiterding, Ralf; Zhu, Chengxiang; You, Yancheng Second-order curved shock theory. (English) Zbl 07186408 J. Fluid Mech. 891, Article ID A21, 36 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. Shi} et al., J. Fluid Mech. 891, Article ID A21, 36 p. (2020; Zbl 07186408) Full Text: DOI
Threadgill, James A. S.; Little, Jesse C. An inviscid analysis of swept oblique shock reflections. (English) Zbl 07182273 J. Fluid Mech. 890, Article ID A22, 37 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{J. A. S. Threadgill} and \textit{J. C. Little}, J. Fluid Mech. 890, Article ID A22, 37 p. (2020; Zbl 07182273) Full Text: DOI
Laguarda, L.; Hickel, S.; Schrijer, F. F. J.; van Oudheusden, B. W. Dynamics of unsteady asymmetric shock interactions. (English) Zbl 07173552 J. Fluid Mech. 888, Article ID A18, 22 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{L. Laguarda} et al., J. Fluid Mech. 888, Article ID A18, 22 p. (2020; Zbl 07173552) Full Text: DOI
Chou, Amanda; Kegerise, Michael A.; King, Rudolph A. Transition induced by streamwise arrays of roughness elements on a flat plate in Mach 3.5 flow. (English) Zbl 07173510 J. Fluid Mech. 888, Article ID A21, 34 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{A. Chou} et al., J. Fluid Mech. 888, Article ID A21, 34 p. (2020; Zbl 07173510) Full Text: DOI
Arndt, Alexander; Corke, Thomas; Matlis, Eric; Semper, Michael Controlled stationary/travelling cross-flow mode interaction in a Mach 6.0 boundary layer. (English) Zbl 07173481 J. Fluid Mech. 887, Article ID A30, 25 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{A. Arndt} et al., J. Fluid Mech. 887, Article ID A30, 25 p. (2020; Zbl 07173481) Full Text: DOI
Guan, Xiao-Ke; Bai, Chen-Yuan; Wu, Zi-Niu Double solution and influence of secondary waves on transition criteria for shock interference in pre-Mach reflection with two incident shock waves. (English) Zbl 07173478 J. Fluid Mech. 887, Article ID A22, 19 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{X.-K. Guan} et al., J. Fluid Mech. 887, Article ID A22, 19 p. (2020; Zbl 07173478) Full Text: DOI
Timme, Sebastian Global instability of wing shock-buffet onset. (English) Zbl 07154371 J. Fluid Mech. 885, Article ID A37, 32 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{S. Timme}, J. Fluid Mech. 885, Article ID A37, 32 p. (2020; Zbl 07154371) Full Text: DOI
Hader, Christoph; Fasel, Hermann F. Three-dimensional wave packet in a Mach 6 boundary layer on a flared cone. (English) Zbl 07150120 J. Fluid Mech. 885, Article ID R3, 14 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{C. Hader} and \textit{H. F. Fasel}, J. Fluid Mech. 885, Article ID R3, 14 p. (2020; Zbl 07150120) Full Text: DOI
Kojima, Yoimi; Yeh, Chi-An; Taira, Kunihiko; Kameda, Masaharu Resolvent analysis on the origin of two-dimensional transonic buffet. (English) Zbl 07150110 J. Fluid Mech. 885, Article ID R1, 12 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{Y. Kojima} et al., J. Fluid Mech. 885, Article ID R1, 12 p. (2020; Zbl 07150110) Full Text: DOI
Deguchi, Kengo Streaky dynamo equilibria persisting at infinite Reynolds numbers. (English) Zbl 07150072 J. Fluid Mech. 884, Article ID R3, 11 p. (2020). MSC: 76 PDF BibTeX XML Cite \textit{K. Deguchi}, J. Fluid Mech. 884, Article ID R3, 11 p. (2020; Zbl 07150072) Full Text: DOI
Yates, Harrison B.; Tufts, Matthew W.; Juliano, Thomas J. Analysis of the hypersonic cross-flow instability with experimental wavenumber distributions. (English) Zbl 1430.76355 J. Fluid Mech. 883, A50, 34 p. (2020). MSC: 76K05 76-05 PDF BibTeX XML Cite \textit{H. B. Yates} et al., J. Fluid Mech. 883, A50, 34 p. (2020; Zbl 1430.76355) Full Text: DOI
Hejranfar, Kazem; Rahmani, Saman Numerical simulation of shock-disturbances interaction in high-speed compressible inviscid flow over a blunt nose using weighted essentially non-oscillatory scheme. (English) Zbl 07221258 Wave Motion 88, 167-195 (2019). MSC: 76 35 PDF BibTeX XML Cite \textit{K. Hejranfar} and \textit{S. Rahmani}, Wave Motion 88, 167--195 (2019; Zbl 07221258) Full Text: DOI
Thang, Nguyen Tat; Hai, Duong Ngoc Numerical study of the natural-cavitating flow around underwater slender bodies. (English. Russian original) Zbl 1434.76140 Fluid Dyn. 54, No. 6, 835-849 (2019); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2019, No. 6, 99-113 (2019). MSC: 76T10 76F60 76M12 PDF BibTeX XML Cite \textit{N. T. Thang} and \textit{D. N. Hai}, Fluid Dyn. 54, No. 6, 835--849 (2019; Zbl 1434.76140); translation from Izv. Ross. Akad. Nauk, Mekh. Zhidk. Gaza 2019, No. 6, 99--113 (2019) Full Text: DOI
Ren, Xiang; Yuan, Junya; He, Bijiao; Zhang, Mingxing; Cai, Guobiao Grid criteria for numerical simulation of hypersonic aerothermodynamics in transition regime. (English) Zbl 1430.76354 J. Fluid Mech. 881, 585-601 (2019). MSC: 76K05 76P05 PDF BibTeX XML Cite \textit{X. Ren} et al., J. Fluid Mech. 881, 585--601 (2019; Zbl 1430.76354) Full Text: DOI
Crouch, Jeffrey D.; Garbaruk, A.; Strelets, M. Global instability in the onset of transonic-wing buffet. (English) Zbl 1430.76343 J. Fluid Mech. 881, 3-22 (2019); corrigendum ibid. 901, Article ID E1, 6 p. (2020). MSC: 76H05 76E09 76D25 PDF BibTeX XML Cite \textit{J. D. Crouch} et al., J. Fluid Mech. 881, 3--22 (2019; Zbl 1430.76343) Full Text: DOI
Dwivedi, Anubhav; Sidharth, G. S.; Nichols, Joseph W.; Candler, Graham V.; Jovanović, Mihailo R. Reattachment streaks in hypersonic compression ramp flow: an input-output analysis. (English) Zbl 1430.76350 J. Fluid Mech. 880, 113-135 (2019). MSC: 76K05 76F40 76F10 76E05 PDF BibTeX XML Cite \textit{A. Dwivedi} et al., J. Fluid Mech. 880, 113--135 (2019; Zbl 1430.76350) Full Text: DOI
Prakash, Ram; Le Page, L. M.; McQuellin, L. P.; Gai, S. L.; O’Byrne, S. Direct simulation Monte Carlo computations and experiments on leading-edge separation in rarefied hypersonic flow. (English) Zbl 1430.76353 J. Fluid Mech. 879, 633-681 (2019). MSC: 76K05 76J20 76N20 PDF BibTeX XML Cite \textit{R. Prakash} et al., J. Fluid Mech. 879, 633--681 (2019; Zbl 1430.76353) Full Text: DOI
Khraibut, Amna; Gai, S. L.; Neely, A. J. Numerical study of bluntness effects on laminar leading edge separation in hypersonic flow. (English) Zbl 1430.76352 J. Fluid Mech. 878, 386-419 (2019). MSC: 76K05 76N20 76M99 PDF BibTeX XML Cite \textit{A. Khraibut} et al., J. Fluid Mech. 878, 386--419 (2019; Zbl 1430.76352) Full Text: DOI
Gai, Sudhir L.; Khraibut, Amna Hypersonic compression corner flow with large separated regions. (English) Zbl 1430.76351 J. Fluid Mech. 877, 471-494 (2019). MSC: 76K05 76J20 PDF BibTeX XML Cite \textit{S. L. Gai} and \textit{A. Khraibut}, J. Fluid Mech. 877, 471--494 (2019; Zbl 1430.76351) Full Text: DOI
Martínez-Ruiz, Daniel; Huete, César; Martínez-Ferrer, Pedro J.; Mira, Daniel Irregular self-similar configurations of shock-wave impingement on shear layers. (English) Zbl 1430.76346 J. Fluid Mech. 872, 889-927 (2019). MSC: 76J20 76L05 PDF BibTeX XML Cite \textit{D. Martínez-Ruiz} et al., J. Fluid Mech. 872, 889--927 (2019; Zbl 1430.76346) Full Text: DOI
Zuo, Feng-Yuan; Memmolo, Antonio; Huang, Guo-Ping; Pirozzoli, Sergio Direct numerical simulation of conical shock wave-turbulent boundary layer interaction. (English) Zbl 1430.76324 J. Fluid Mech. 877, 167-195 (2019). MSC: 76F65 76F50 76L05 76N20 76F40 PDF BibTeX XML Cite \textit{F.-Y. Zuo} et al., J. Fluid Mech. 877, 167--195 (2019; Zbl 1430.76324) Full Text: DOI
Viaro, Samuele; Ricco, Pierre Neutral stability curves of compressible Görtler flow generated by low-frequency free-stream vortical disturbances. (English) Zbl 1430.76417 J. Fluid Mech. 876, 1146-1157 (2019). MSC: 76N20 76K05 76D10 76F06 PDF BibTeX XML Cite \textit{S. Viaro} and \textit{P. Ricco}, J. Fluid Mech. 876, 1146--1157 (2019; Zbl 1430.76417) Full Text: DOI
Maslov, Anatoly A.; Mironov, S. G.; Poplavskaya, T. V.; Kirilovskiy, S. V. Supersonic flow around a cylinder with a permeable high-porosity insert: experiment and numerical simulation. (English) Zbl 1430.76411 J. Fluid Mech. 867, 611-632 (2019). MSC: 76N15 76J20 76-05 76S05 76M20 PDF BibTeX XML Cite \textit{A. A. Maslov} et al., J. Fluid Mech. 867, 611--632 (2019; Zbl 1430.76411) Full Text: DOI
Deguchi, Kengo High-speed shear-driven dynamos. II: Numerical analysis. (English) Zbl 1421.76089 J. Fluid Mech. 876, 830-858 (2019). MSC: 76E30 76W05 76E25 76F06 PDF BibTeX XML Cite \textit{K. Deguchi}, J. Fluid Mech. 876, 830--858 (2019; Zbl 1421.76089) Full Text: DOI
Li, Weipeng; Fan, Yitong; Modesti, Davide; Cheng, Cheng Decomposition of the mean skin-friction drag in compressible turbulent channel flows. (English) Zbl 1419.76353 J. Fluid Mech. 875, 101-123 (2019). MSC: 76F50 76F40 76F65 PDF BibTeX XML Cite \textit{W. Li} et al., J. Fluid Mech. 875, 101--123 (2019; Zbl 1419.76353) Full Text: DOI
Deguchi, Kengo Inviscid instability of a unidirectional flow sheared in two transverse directions. (English) Zbl 1419.76263 J. Fluid Mech. 874, 979-994 (2019). MSC: 76F06 76E05 76E30 PDF BibTeX XML Cite \textit{K. Deguchi}, J. Fluid Mech. 874, 979--994 (2019; Zbl 1419.76263) Full Text: DOI
Kluwick, Alfred; Cox, E. A. Weak shock reflection in channel flows for dense gases. (English) Zbl 1419.76547 J. Fluid Mech. 874, 131-157 (2019). MSC: 76N15 76L05 76H05 PDF BibTeX XML Cite \textit{A. Kluwick} and \textit{E. A. Cox}, J. Fluid Mech. 874, 131--157 (2019; Zbl 1419.76547) Full Text: DOI
Sharma, Sushank; Shadloo, Mostafa S.; Hadjadj, Abdellah; Kloker, Markus J. Control of oblique-type breakdown in a supersonic boundary layer employing streaks. (English) Zbl 1419.76413 J. Fluid Mech. 873, 1072-1089 (2019). MSC: 76J20 76N20 76F06 PDF BibTeX XML Cite \textit{S. Sharma} et al., J. Fluid Mech. 873, 1072--1089 (2019; Zbl 1419.76413) Full Text: DOI
Xu, Guoliang; Chen, Jianqiang; Liu, Gang; Dong, Siwei; Fu, Song The secondary instabilities of stationary cross-flow vortices in a Mach 6 swept wing flow. (English) Zbl 1419.76419 J. Fluid Mech. 873, 914-941 (2019). MSC: 76K05 76F06 76E30 76N20 PDF BibTeX XML Cite \textit{G. Xu} et al., J. Fluid Mech. 873, 914--941 (2019; Zbl 1419.76419) Full Text: DOI
Zainal Abidin, Mohd Izzudin Izzat; Park, Kyeong Hyeon; Angeli, Panagiota Vortex-induced interfacial waves in liquid-liquid flows across cylindrical bluff bodies of various sizes. (English) Zbl 07073382 Eur. J. Mech., B, Fluids 76, 340-351 (2019). MSC: 76 PDF BibTeX XML Cite \textit{M. I. I. Zainal Abidin} et al., Eur. J. Mech., B, Fluids 76, 340--351 (2019; Zbl 07073382) Full Text: DOI
Craig, Stuart A.; Humble, Raymond A.; Hofferth, Jerrod W.; Saric, William S. Nonlinear behaviour of the Mack mode in a hypersonic boundary layer. (English) Zbl 1419.76416 J. Fluid Mech. 872, 74-99 (2019). MSC: 76K05 76E30 76N20 PDF BibTeX XML Cite \textit{S. A. Craig} et al., J. Fluid Mech. 872, 74--99 (2019; Zbl 1419.76416) Full Text: DOI
Hornung, H. G.; Martinez Schramm, Jan; Hannemann, Klaus Hypersonic flow over spherically blunted cone capsules for atmospheric entry. I: The sharp cone and the sphere. (English) Zbl 1419.76418 J. Fluid Mech. 871, 1097-1116 (2019). MSC: 76K05 76L05 76N15 PDF BibTeX XML Cite \textit{H. G. Hornung} et al., J. Fluid Mech. 871, 1097--1116 (2019; Zbl 1419.76418) Full Text: DOI
Rabey, P. K.; Jammy, S. P.; Bruce, P. J. K.; Sandham, N. D. Two-dimensional unsteadiness map of oblique shock wave/boundary layer interaction with sidewalls. (English) Zbl 1419.76373 J. Fluid Mech. 871, R4, 11 p. (2019). MSC: 76F65 76L05 PDF BibTeX XML Cite \textit{P. K. Rabey} et al., J. Fluid Mech. 871, R4, 11 p. (2019; Zbl 1419.76373) Full Text: DOI
Hader, Christoph; Fasel, Hermann F. Direct numerical simulations of hypersonic boundary-layer transition for a flared cone: fundamental breakdown. (English) Zbl 1415.76270 J. Fluid Mech. 869, 341-384 (2019). MSC: 76F06 76N20 76F65 PDF BibTeX XML Cite \textit{C. Hader} and \textit{H. F. Fasel}, J. Fluid Mech. 869, 341--384 (2019; Zbl 1415.76270) Full Text: DOI
Sun, Mingbo; Liu, Yuan; Hu, Zhiwei Turbulence decay in a supersonic boundary layer subjected to a transverse sonic jet. . (English) Zbl 1415.76427 J. Fluid Mech. 867, 216-249 (2019). MSC: 76J20 76N20 76H05 76F65 76-05 PDF BibTeX XML Cite \textit{M. Sun} et al., J. Fluid Mech. 867, 216--249 (2019; Zbl 1415.76427) Full Text: DOI
Shrestha, Prakash; Candler, Graham V. Direct numerical simulation of high-speed transition due to roughness elements. (English) Zbl 1415.76532 J. Fluid Mech. 868, 762-788 (2019). MSC: 76N20 76K05 76F65 76F10 PDF BibTeX XML Cite \textit{P. Shrestha} and \textit{G. V. Candler}, J. Fluid Mech. 868, 762--788 (2019; Zbl 1415.76532) Full Text: DOI
Unnikrishnan, S.; Gaitonde, Datta V. Interactions between vortical, acoustic and thermal components during hypersonic transition. (English) Zbl 1415.76431 J. Fluid Mech. 868, 611-647 (2019). MSC: 76K05 76N20 76F10 76E30 76Q05 PDF BibTeX XML Cite \textit{S. Unnikrishnan} and \textit{D. V. Gaitonde}, J. Fluid Mech. 868, 611--647 (2019; Zbl 1415.76431) Full Text: DOI
Deguchi, Kengo High-speed shear-driven dynamos. I: Asymptotic analysis. (English) Zbl 1415.76757 J. Fluid Mech. 868, 176-211 (2019). MSC: 76W05 76E25 76E30 85A30 PDF BibTeX XML Cite \textit{K. Deguchi}, J. Fluid Mech. 868, 176--211 (2019; Zbl 1415.76757) Full Text: DOI
Schilden, Thomas; Schröder, Wolfgang Inclined slow acoustic waves incident to stagnation point probes in supersonic flow. (English) Zbl 1415.76425 J. Fluid Mech. 866, 567-597 (2019). MSC: 76J20 76Q05 76N15 76N20 76L05 PDF BibTeX XML Cite \textit{T. Schilden} and \textit{W. Schröder}, J. Fluid Mech. 866, 567--597 (2019; Zbl 1415.76425) Full Text: DOI
Sun, Mingbo; Sandham, Neil D.; Hu, Zhiwei Turbulence structures and statistics of a supersonic turbulent boundary layer subjected to concave surface curvature. (English) Zbl 1415.76364 J. Fluid Mech. 865, 60-99 (2019). MSC: 76F40 76J20 76N20 76F10 76F65 PDF BibTeX XML Cite \textit{M. Sun} et al., J. Fluid Mech. 865, 60--99 (2019; Zbl 1415.76364) Full Text: DOI
Lin, Jing; Bai, Chen-Yuan; Wu, Zi-Niu Study of asymmetrical shock wave reflection in steady supersonic flow. (English) Zbl 1415.76424 J. Fluid Mech. 864, 848-875 (2019). MSC: 76J20 76L05 PDF BibTeX XML Cite \textit{J. Lin} et al., J. Fluid Mech. 864, 848--875 (2019; Zbl 1415.76424) Full Text: DOI
Wang, Qian-Cheng; Wang, Zhen-Guo; Sun, Ming-Bo; Yang, Rui; Zhao, Yu-Xin; Hu, Zhiwei The amplification of large-scale motion in a supersonic concave turbulent boundary layer and its impact on the mean and statistical properties. (English) Zbl 1415.76535 J. Fluid Mech. 863, 454-493 (2019). MSC: 76N20 76N25 76F65 76J20 PDF BibTeX XML Cite \textit{Q.-C. Wang} et al., J. Fluid Mech. 863, 454--493 (2019; Zbl 1415.76535) Full Text: DOI
Xiang, X.; Babinsky, H. Corner effects for oblique shock wave/turbulent boundary layer interactions in rectangular channels. (English) Zbl 1415.76441 J. Fluid Mech. 862, 1060-1083 (2019). MSC: 76L05 76N20 PDF BibTeX XML Cite \textit{X. Xiang} and \textit{H. Babinsky}, J. Fluid Mech. 862, 1060--1083 (2019; Zbl 1415.76441) Full Text: DOI
Weightman, Joel L.; Amili, Omid; Honnery, Damon; Edgington-Mitchell, Daniel; Soria, Julio Nozzle external geometry as a boundary condition for the azimuthal mode selection in an impinging underexpanded jet. (English) Zbl 1415.76578 J. Fluid Mech. 862, 421-448 (2019). MSC: 76Q05 76J20 PDF BibTeX XML Cite \textit{J. L. Weightman} et al., J. Fluid Mech. 862, 421--448 (2019; Zbl 1415.76578) Full Text: DOI
Hunt, Robin L.; Gamba, Mirko On the origin and propagation of perturbations that cause shock train inherent unsteadiness. (English) Zbl 1415.76436 J. Fluid Mech. 861, 815-859 (2019). MSC: 76L05 76J20 76N20 76F40 PDF BibTeX XML Cite \textit{R. L. Hunt} and \textit{M. Gamba}, J. Fluid Mech. 861, 815--859 (2019; Zbl 1415.76436) Full Text: DOI
Chuvakhov, Pavel V.; Fedorov, Alexander V.; Obraz, Anton O. Numerical modelling of supersonic boundary-layer receptivity to solid particulates. (English) Zbl 1415.76423 J. Fluid Mech. 859, 949-971 (2019). MSC: 76J20 76N15 76N20 76K05 76E05 PDF BibTeX XML Cite \textit{P. V. Chuvakhov} et al., J. Fluid Mech. 859, 949--971 (2019; Zbl 1415.76423) Full Text: DOI
Deguchi, Kengo; Walton, Andrew Bifurcation of nonlinear Tollmien-Schlichting waves in a high-speed channel flow. (English) Zbl 1430.76110 J. Fluid Mech. 843, 53-97 (2018). MSC: 76D05 76D33 76Exx PDF BibTeX XML Cite \textit{K. Deguchi} and \textit{A. Walton}, J. Fluid Mech. 843, 53--97 (2018; Zbl 1430.76110) Full Text: DOI
Lin, Kuo-Cheng; Kastengren, Alan L.; Peltier, Scott J.; Carter, Campbell D. Characterization of time-averaged and temporal two-phase flow structures in aerated-liquid jets using \(x\)-ray diagnostics. (English) Zbl 1425.76266 Vorobieff, Peter (ed.) et al., Multiphase flow. Theory and applications. Southampton: WIT Press. 143-155 (2018). MSC: 76T10 76-05 PDF BibTeX XML Cite \textit{K.-C. Lin} et al., in: Multiphase flow. Theory and applications. Southampton: WIT Press. 143--155 (2018; Zbl 1425.76266) Full Text: DOI
Xiong, Bing; Fan, Xiao-Qiang; Wang, Zhen-Guo; Tao, Yuan Analysis and modelling of unsteady shock train motions. (English) Zbl 1421.76151 J. Fluid Mech. 846, 240-262 (2018). MSC: 76L05 76N15 PDF BibTeX XML Cite \textit{B. Xiong} et al., J. Fluid Mech. 846, 240--262 (2018; Zbl 1421.76151) Full Text: DOI
Vanstone, Leon; Musta, Mustafa Nail; Seckin, Serdar; Clemens, Noel Experimental study of the mean structure and quasi-conical scaling of a swept-compression-ramp interaction at Mach 2. (English) Zbl 1419.76430 J. Fluid Mech. 841, 1-27 (2018); corrigendum ibid. 843, 898 (2018). MSC: 76L05 76F40 76F65 76-05 PDF BibTeX XML Cite \textit{L. Vanstone} et al., J. Fluid Mech. 841, 1--27 (2018; Zbl 1419.76430) Full Text: DOI
Bdzil, John B. Anatomy of a diffracting detonation in a circular arc of explosive. (English) Zbl 1419.76421 J. Fluid Mech. 840, 1-4 (2018). MSC: 76L05 80A25 76V05 PDF BibTeX XML Cite \textit{J. B. Bdzil}, J. Fluid Mech. 840, 1--4 (2018; Zbl 1419.76421) Full Text: DOI
Mehta, Y.; Neal, C.; Salari, K.; Jackson, T. L.; Balachandar, S.; Thakur, S. Propagation of a strong shock over a random bed of spherical particles. (English) Zbl 1419.76679 J. Fluid Mech. 839, 157-197 (2018). MSC: 76T25 76L05 76M12 PDF BibTeX XML Cite \textit{Y. Mehta} et al., J. Fluid Mech. 839, 157--197 (2018; Zbl 1419.76679) Full Text: DOI
Hinman, W. Schuyler; Johansen, Craig T. Mechanisms in the hypersonic laminar near wake of a blunt body. (English) Zbl 1419.76417 J. Fluid Mech. 839, 33-75 (2018). MSC: 76K05 76L05 76Nxx PDF BibTeX XML Cite \textit{W. S. Hinman} and \textit{C. T. Johansen}, J. Fluid Mech. 839, 33--75 (2018; Zbl 1419.76417) Full Text: DOI
Salemi, Leonardo C.; Fasel, Hermann F. Synchronization of second-mode instability waves for high-enthalpy hypersonic boundary layers. (English) Zbl 1419.76408 J. Fluid Mech. 838, R2, 14 p. (2018). MSC: 76H05 76N20 PDF BibTeX XML Cite \textit{L. C. Salemi} and \textit{H. F. Fasel}, J. Fluid Mech. 838, R2, 14 p. (2018; Zbl 1419.76408) Full Text: DOI
Deguchi, Kengo; Hall, Philip Free-stream coherent structures in a planar jet. (English) Zbl 1419.76397 J. Fluid Mech. 837, 916-930 (2018). MSC: 76G25 76E30 PDF BibTeX XML Cite \textit{K. Deguchi} and \textit{P. Hall}, J. Fluid Mech. 837, 916--930 (2018; Zbl 1419.76397) Full Text: DOI
Kemm, Friedemann Heuristical and numerical considerations for the carbuncle phenomenon. (English) Zbl 1426.76200 Appl. Math. Comput. 320, 596-613 (2018). MSC: 76J20 65M08 76K05 76L05 76M12 76N15 PDF BibTeX XML Cite \textit{F. Kemm}, Appl. Math. Comput. 320, 596--613 (2018; Zbl 1426.76200) Full Text: DOI arXiv
Nagata, Takayuki; Nonomura, T.; Takahashi, S.; Mizuno, Y.; Fukuda, K. Direct numerical simulation of flow past a transversely rotating sphere up to a Reynolds number of 300 in compressible flow. (English) Zbl 1415.76733 J. Fluid Mech. 857, 878-906 (2018). MSC: 76U05 76F65 76N15 PDF BibTeX XML Cite \textit{T. Nagata} et al., J. Fluid Mech. 857, 878--906 (2018; Zbl 1415.76733) Full Text: DOI
Huang, Xin; Estruch-Samper, David Low-frequency unsteadiness of swept shock-wave/turbulent-boundary-layer interaction. (English) Zbl 1415.76339 J. Fluid Mech. 856, 797-821 (2018). MSC: 76F40 76D10 PDF BibTeX XML Cite \textit{X. Huang} and \textit{D. Estruch-Samper}, J. Fluid Mech. 856, 797--821 (2018; Zbl 1415.76339) Full Text: DOI
Di Giovanni, Antonio; Stemmer, Christian Cross-flow-type breakdown induced by distributed roughness in the boundary layer of a hypersonic capsule configuration. (English) Zbl 1415.76268 J. Fluid Mech. 856, 470-503 (2018). MSC: 76F06 76K05 76E30 PDF BibTeX XML Cite \textit{A. Di Giovanni} and \textit{C. Stemmer}, J. Fluid Mech. 856, 470--503 (2018; Zbl 1415.76268) Full Text: DOI
Zhu, Yiding; Lee, Cunbiao; Chen, Xi; Wu, Jiezhi; Chen, Shiyi; Gad-El-Hak, Mohamed Newly identified principle for aerodynamic heating in hypersonic flows. (English) Zbl 1415.76288 J. Fluid Mech. 855, 152-180 (2018). MSC: 76F06 76K05 76N20 PDF BibTeX XML Cite \textit{Y. Zhu} et al., J. Fluid Mech. 855, 152--180 (2018; Zbl 1415.76288) Full Text: DOI
Hader, Christoph; Fasel, Hermann F. Towards simulating natural transition in hypersonic boundary layers via random inflow disturbances. (English) Zbl 1404.76111 J. Fluid Mech. 847, R3, 14 p. (2018). MSC: 76F06 76K05 PDF BibTeX XML Cite \textit{C. Hader} and \textit{H. F. Fasel}, J. Fluid Mech. 847, R3, 14 p. (2018; Zbl 1404.76111) Full Text: DOI
Qiu, Ruo-Fan; Zhu, Cheng-Xiang; Chen, Rong-Qian; Zhu, Jian-Feng; You, Yan-Cheng A double-distribution-function lattice Boltzmann model for high-speed compressible viscous flows. (English) Zbl 1390.76757 Comput. Fluids 166, 24-31 (2018). MSC: 76M28 76J20 76L05 76N20 PDF BibTeX XML Cite \textit{R.-F. Qiu} et al., Comput. Fluids 166, 24--31 (2018; Zbl 1390.76757) Full Text: DOI
Mortensen, Clifton H. Toward an understanding of supersonic modes in boundary-layer transition for hypersonic flow over blunt cones. (English) Zbl 1404.76155 J. Fluid Mech. 846, 789-814 (2018). MSC: 76K05 76N20 PDF BibTeX XML Cite \textit{C. H. Mortensen}, J. Fluid Mech. 846, 789--814 (2018; Zbl 1404.76155) Full Text: DOI
Zhuang, Yi; Tan, Huijun; Huang, Hexia; Liu, Yazhou; Zhang, Yue Fractal characteristics of turbulent-non-turbulent interface in supersonic turbulent boundary layers. (English) Zbl 1444.76006 J. Fluid Mech. 843, R2, 9 p. (2018). MSC: 76-05 76F40 76J20 28A80 PDF BibTeX XML Cite \textit{Y. Zhuang} et al., J. Fluid Mech. 843, R2, 9 p. (2018; Zbl 1444.76006) Full Text: DOI
Ding, Juchun; Si, Ting; Chen, Mojun; Zhai, Zhigang; Lu, Xiyun; Luo, Xisheng On the interaction of a planar shock with a three-dimensional light gas cylinder. (English) Zbl 07135890 J. Fluid Mech. 828, 289-317 (2017). MSC: 76 PDF BibTeX XML Cite \textit{J. Ding} et al., J. Fluid Mech. 828, 289--317 (2017; Zbl 07135890) Full Text: DOI
Chandola, Gaurav; Huang, Xin; Estruch-Samper, David Highly separated axisymmetric step shock-wave/turbulent-boundary-layer interaction. (English) Zbl 07135888 J. Fluid Mech. 828, 236-270 (2017). MSC: 76 PDF BibTeX XML Cite \textit{G. Chandola} et al., J. Fluid Mech. 828, 236--270 (2017; Zbl 07135888) Full Text: DOI
Wagner, Justin L.; Beresh, Steven J.; Casper, Katya M.; Demauro, Edward P.; Arunajatesan, Srinivasan Resonance dynamics in compressible cavity flows using time-resolved velocity and surface pressure fields. (English) Zbl 1421.76198 J. Fluid Mech. 830, 494-527 (2017). MSC: 76N15 76Q05 PDF BibTeX XML Cite \textit{J. L. Wagner} et al., J. Fluid Mech. 830, 494--527 (2017; Zbl 1421.76198) Full Text: DOI
Schilden, Thomas; Schröder, Wolfgang Numerical analysis of high speed wind tunnel flow disturbance measurements using stagnation point probes. (English) Zbl 1419.76550 J. Fluid Mech. 833, 247-273 (2017). MSC: 76N15 76L05 76N20 PDF BibTeX XML Cite \textit{T. Schilden} and \textit{W. Schröder}, J. Fluid Mech. 833, 247--273 (2017; Zbl 1419.76550) Full Text: DOI
Karnick, Pradeepa T.; Venkatraman, Kartik Shock-boundary layer interaction and energetics in transonic flutter. (English) Zbl 1419.76406 J. Fluid Mech. 832, 212-240 (2017). MSC: 76H05 74F10 PDF BibTeX XML Cite \textit{P. T. Karnick} and \textit{K. Venkatraman}, J. Fluid Mech. 832, 212--240 (2017; Zbl 1419.76406) Full Text: DOI
Gerlinger, Peter Lagrangian transported MDF methods for compressible high speed flows. (English) Zbl 1375.76163 J. Comput. Phys. 339, 68-95 (2017). MSC: 76N15 80A25 76M28 76M12 PDF BibTeX XML Cite \textit{P. Gerlinger}, J. Comput. Phys. 339, 68--95 (2017; Zbl 1375.76163) Full Text: DOI
Hewitt, R. E.; Duck, P. W.; Williams, A. J. Injection into boundary layers: solutions beyond the classical form. (English) Zbl 1383.76095 J. Fluid Mech. 822, 617-639 (2017). MSC: 76D10 76D05 PDF BibTeX XML Cite \textit{R. E. Hewitt} et al., J. Fluid Mech. 822, 617--639 (2017; Zbl 1383.76095) Full Text: DOI
Zhang, Chao; Duan, Lian; Choudhari, Meelan M. Effect of wall cooling on boundary-layer-induced pressure fluctuations at Mach 6. (English) Zbl 1383.76255 J. Fluid Mech. 822, 5-30 (2017). MSC: 76F40 76K05 76N20 76F65 PDF BibTeX XML Cite \textit{C. Zhang} et al., J. Fluid Mech. 822, 5--30 (2017; Zbl 1383.76255) Full Text: DOI
Khraibut, Amna; Gai, S. L.; Brown, L. M.; Neely, A. J. Laminar hypersonic leading edge separation – a numerical study. (English) Zbl 1383.76317 J. Fluid Mech. 821, 624-646 (2017). MSC: 76K05 76N20 76M25 PDF BibTeX XML Cite \textit{A. Khraibut} et al., J. Fluid Mech. 821, 624--646 (2017; Zbl 1383.76317) Full Text: DOI
Deguchi, Kengo Scaling of small vortices in stably stratified shear flows. (English) Zbl 1383.76104 J. Fluid Mech. 821, 582-594 (2017). MSC: 76D17 76D50 76E99 PDF BibTeX XML Cite \textit{K. Deguchi}, J. Fluid Mech. 821, 582--594 (2017; Zbl 1383.76104) Full Text: DOI
Singh, Narendra; Schwartzentruber, Thomas E. Aerothermodynamic correlations for high-speed flow. (English) Zbl 1383.76413 J. Fluid Mech. 821, 421-439 (2017). MSC: 76P05 76K05 76L05 PDF BibTeX XML Cite \textit{N. Singh} and \textit{T. E. Schwartzentruber}, J. Fluid Mech. 821, 421--439 (2017; Zbl 1383.76413) Full Text: DOI
Estruch-Samper, David; Hillier, Richard; Vanstone, Leon; Ganapathisubramani, Bharathram Effect of isolated roughness element height on high-speed laminar-turbulent transition. (English) Zbl 1383.76189 J. Fluid Mech. 818, R1, 14 p. (2017). MSC: 76F06 76N20 76F50 PDF BibTeX XML Cite \textit{D. Estruch-Samper} et al., J. Fluid Mech. 818, R1, 14 p. (2017; Zbl 1383.76189) Full Text: DOI
Bai, Chen-Yuan; Wu, Zi-Niu Size and shape of shock waves and slipline for Mach reflection in steady flow. (English) Zbl 1383.76396 J. Fluid Mech. 818, 116-140 (2017). MSC: 76N15 76L05 PDF BibTeX XML Cite \textit{C.-Y. Bai} and \textit{Z.-N. Wu}, J. Fluid Mech. 818, 116--140 (2017; Zbl 1383.76396) Full Text: DOI
Bdzil, John B.; Short, Mark Theory of Mach reflection of detonation at glancing incidence. (English) Zbl 1383.76320 J. Fluid Mech. 811, 269-314 (2017). MSC: 76L05 PDF BibTeX XML Cite \textit{J. B. Bdzil} and \textit{M. Short}, J. Fluid Mech. 811, 269--314 (2017; Zbl 1383.76320) Full Text: DOI