Crossref Citations
This article has been cited by the following publications. This list is generated based on data provided by
Crossref.
Spedding, P.L.
Benard, E.
and
Mcnally, G.M.
2004.
Fluid Flow through 90 Degree Bends.
Developments in Chemical Engineering and Mineral Processing,
Vol. 12,
Issue. 1-2,
p.
107.
Roberts, A. J.
2004.
Shear Dispersion along Circular Pipes Is Affected by Bends, but the Torsion of the Pipe Is Negligible.
SIAM Journal on Applied Dynamical Systems,
Vol. 3,
Issue. 4,
p.
433.
Jang, Bongkyun
and
Funakoshi, Mitsuaki
2010.
Chaotic mixing in a helix-like pipe with periodic variations in curvature and torsion.
Fluid Dynamics Research,
Vol. 42,
Issue. 3,
p.
035506.
Beauregard, Matthew A.
Goriely, Alain
and
Tabor, Michael
2010.
The nonlinear dynamics of elastic tubes conveying a fluid.
International Journal of Solids and Structures,
Vol. 47,
Issue. 1,
p.
161.
Bardan, G.
Plouraboue, F.
Zagzoule, M.
and
Baledent, O.
2012.
Simple Patient-Based Transmantle Pressure and Shear Estimate From Cine Phase-Contrast MRI in Cerebral Aqueduct.
IEEE Transactions on Biomedical Engineering,
Vol. 59,
Issue. 10,
p.
2874.
ZHENG, TINGHUI
WANG, WEIZHONG
JIANG, WENTAO
DENG, XIAOYAN
and
FAN, YUBO
2012.
ASSESSING HEMODYNAMIC PERFORMANCES OF SMALL DIAMETER HELICAL GRAFTS: TRANSIENT SIMULATION.
Journal of Mechanics in Medicine and Biology,
Vol. 12,
Issue. 01,
p.
1250008.
Selvarasu, N. K. C.
and
Tafti, Danesh K.
2012.
Investigation of the Effects of Dynamic Change in Curvature and Torsion on Pulsatile Flow in a Helical Tube.
Journal of Biomechanical Engineering,
Vol. 134,
Issue. 7,
Kutin, J.
and
Bajsić, I.
2014.
Fluid-dynamic loading of pipes conveying fluid with a laminar mean-flow velocity profile.
Journal of Fluids and Structures,
Vol. 50,
Issue. ,
p.
171.
Nobari, M.R.H.
Shiniyan, B.
and
Mirzaei, M.
2014.
Mixed convection in a vertical helical annular pipe.
International Journal of Heat and Mass Transfer,
Vol. 73,
Issue. ,
p.
468.
Gay-Balmaz, François
and
Putkaradze, Vakhtang
2014.
Exact geometric theory for flexible, fluid-conducting tubes.
Comptes Rendus. Mécanique,
Vol. 342,
Issue. 2,
p.
79.
FREITAS, A. G. B.
OLIVEIRA, I. M.
OLIVEIRA, Y. M.
SILVA, G. F.
and
MEDRONHO, R. A.
2015.
MODELAGEM MATEMÁTICA DO ESCOAMENTO DE FLUIDOS EM TUBOS HELICOIDAIS.
p.
6353.
Salem, M. R.
Elshazly, K. M.
Sakr, R. Y.
and
Ali, R. K.
2015.
Experimental Investigation of Coil Curvature Effect on Heat Transfer and Pressure Drop Characteristics of Shell and Coil Heat Exchanger.
Journal of Thermal Science and Engineering Applications,
Vol. 7,
Issue. 1,
Castiñeira, Gonzalo
and
Rodríguez, José M.
2016.
Asymptotic analysis of a newtonian fluid in a curved pipe with moving walls.
Vol. 1738,
Issue. ,
p.
480027.
Jamil, Muhammad
Tan, Germaine Xin Yi
Huq, Mehnaz
Kang, Heidi
Lee, Zhi Rui
Tang, Phua Hwee
Hu, Xi Hong
and
Yap, Choon Hwai
2016.
Changes to the geometry and fluid mechanics of the carotid siphon in the pediatric Moyamoya disease.
Computer Methods in Biomechanics and Biomedical Engineering,
Vol. 19,
Issue. 16,
p.
1760.
Castiñeira, Gonzalo
and
Rodríguez, José M.
2016.
Trends in Differential Equations and Applications.
Vol. 8,
Issue. ,
p.
73.
Salem, M. R.
Elshazly, K. M.
Sakr, R. Y.
and
Ali, R. K.
2016.
Effect of Coil Torsion on Heat Transfer and Pressure Drop Characteristics of Shell and Coil Heat Exchanger.
Journal of Thermal Science and Engineering Applications,
Vol. 8,
Issue. 1,
Arnold, D. J.
Stokes, Y. M.
and
Green, J. E. F.
2017.
Thin-film flow in helically wound shallow channels of arbitrary cross-sectional shape.
Physics of Fluids,
Vol. 29,
Issue. 1,
Bobovnik, Gregor
and
Kutin, Jože
2018.
Numerical study of the fluid-dynamic loading on pipes conveying fluid with a laminar velocity profile.
Journal of Fluids and Structures,
Vol. 80,
Issue. ,
p.
441.
Harding, Brendan
and
Stokes, Yvonne
2018.
Fluid flow in a spiral microfluidic duct.
Physics of Fluids,
Vol. 30,
Issue. 4,
Zhang, Ting
Guo, Kai
Liu, Chunjiang
Feng, Aiguo
Cai, Hongwei
and
Ren, Siyuan
2018.
Numerical simulation and experimental study of liquid–liquid flow dispersion in conical spiral pipes.
Chemical Engineering Research and Design,
Vol. 138,
Issue. ,
p.
374.