28 papers · ranked by Valyu relevance
Shuguang Li, Kodi Raghunath, Ayman Alfaleh, Farhan Ali + 4 more
'M. Ijaz Khan' 'Sayed M. ElDin' 'V. Puneeth'] The impact of chemical reaction and activation energy plays a vital role in the analysis of fluid dynamics and its thermal properties. The application of the flow of fluid is significantly considered in nuclear reactors, automobiles, manufacturing setups, electronic…
T. Hayat, Sumaira Jabeen, Anum Shafiq, A. Alsaedi + 1 more
Influence of magnetohydrodynamic (MHD) flow between two parallel disks is considered. Heat transfer analysis is disclosed due to thermal radiation and convective boundary condition. Appropriate transformations are invoked to obtain the ordinary differential system. This system is solved using homotopic approach.…
Nimer Murshid, Hasan Mulki, Mahmoud Abu-Samha, Wahib Owhaib + 7 more
'S. Suresh Kumar Raju' 'Chakravarthula S. K. Raju' 'Macherla JayachandraBabu' 'Raad Z. Homod' 'Wael Al-Kouz' 'Taseer Muhammad' 'Metib Alghamdi'] Squeezing flow is a flow where the material is squeezed out or disfigured within two parallel plates. Such flow is beneficial in various fields, for instance, in welding…
Mubashir Qayyum, Hamid Khan, M. Tariq Rahim, Inayat Ullah + 1 more
The aim of this article is to model and analyze an unsteady axisymmetric flow of non-conducting, Newtonian fluid squeezed between two circular plates passing through porous medium channel with slip boundary condition. A single fourth order nonlinear ordinary differential equation is obtained using similarity…
Maryam Mabrook Almalki, Eman Salem Alaidarous, Dalal Adnan Maturi, Muhammad Asif Zahoor Raja + 1 more
'Muhammad Asif Zahoor Raja' 'Muhammad Shoaib'] In this study, the unsteady squeezing flow between circular parallel plates (USF-CPP) is investigated through the intelligent computing paradigm of Levenberg-Marquard backpropagation neural networks (LMBNN). Similarity transformation introduces the fluidic system of the…
Sadia Bano, M. Kamran Alam, Aamir Khan, Abdul Baseer Saqib
This article explores the influence of Joule heating and viscous dissipation on the unsteady three-dimensional squeezing flow of Newtonian fluid. The flow in a rotating channel with a lower stretched permeable wall is observed under the influence of a uniform magnetic field. The impact of thermal radiation is also…
Mohammad Ramezani, S. Salman Nourazar, H. R. Dehghanpour
In this paper the Fourier transform combined with Adomian decomposition method (FTADM) is applied for solving the squeezed unsteady flow between parallel plates influenced by an inclined magnetic field. By moving these plates toward each other, the squeezing flow which is perpendicular to the plates is appeared. We…
Jinsong Zhang, Yufeng Han, Zhiliang Wang, Carlos Manuel Silva + 1 more
'Yannis Dimakopoulos'] This paper studied the evolution of NaAlg solution micro-droplet in a coaxial microchannel. The Bird-Carreau model was used to characterize the flow properties of NaAlg solution. As the mass fraction decreased, the flow behavior index n also decreased, indicating that the NaAlg solution was…
Svetlin Tassev, Antonia Savcheva
We study the properties of the local transverse deviations of magnetic field lines at a fixed moment in time. Those deviations "evolve" smoothly in a plane normal to the field-line direction as one moves that plane along the field line. Since the evolution can be described by a planar flow in the normal plane, we…
Nur Azlina Mat Noor, Sharidan Shafie, Y. S. Hamed, Mohd Ariff Admon + 1 more
horizontal channel with thermal radiation Soret and Dufour effects on MHD squeezing flow of Jeffrey fluid in horizontal channel with thermal radiation Authors: ['Nur Azlina Mat Noor' 'Sharidan Shafie' 'Y. S. Hamed' 'Mohd Ariff Admon' 'Naramgari Sandeep'] The fluid flow with chemical reaction is one of well-known…
Geoffrey Dawson, Anne Juel
In this fluid dynamics video, we compare the deformation of two flexible particles as they propagate through a sudden constriction of a liquid-filled channel under constant-flux flow: a gas bubble, and a capsule formed by encapsulating a liquid droplet in a cross-linked polymeric membrane. Both bubble and capsule adopt…
Yong Zhang, Peng Ru
We explore the squeezed back-to-back correlation (SBBC) and investigate how the squeezing effect influences the Hanbury Brown-Twiss (HBT) interferometry using an expanding Gaussian source with non-zero width. The SBBC and HBT of D 0 and φ mesons with finite in-medium widths are studied. The expanding flow of the source…
Michael G. Hale, Jonathan A. Coles
Exchange of molecules between cerebrospinal fluid (CSF) and brain cells contributes to brain function and protection from dementia, but the route by which CSF is brought close enough to the neural tissue to be exchanged by extracellular diffusion is not clear. Exogenous molecules injected into CSF are carried along…
Sontti, Somasekhara Goud, Atta, Arnab
We have developed a coupled level set and volume of fluid (CLSVOF) based computational fluid dynamics (CFD) model to analyze the droplet formation mechanism in a square flow–focusing microchannel. We demonstrate a flexible manipulation of droplet formation and flow regime based on the modified flow–focusing…
A. van der Net, R. C. Boot, I. van Dijk, J.P. Conboy + 2 more
Cancer cells can utilize different invasion strategies to overcome physical arrest during confined migration through tissues with small pores. Cancer cell plasticity allows switches between different migration modes and transitions between single-cell and collective migration. The biophysical parameters that guide…
Aarthi Namasivayam, Christopher J. Halbrook, Elliot E. Hui
Mammalian cell culture in nanoliter droplets of extracellular matrix has recently attracted interest as a platform for high throughput drug screening on 3D tissue models. Microfluidic droplet generation using basement membrane extract, such as Matrigel or Cultrex, is complicated by the fact that the viscosity is orders…
Mengfei He, Sungkyu Cho, Gianna Dafflisio, Sitaram Emani + 1 more
'L. Mahadevan'] Soft valves serve to modulate and rectify flows in complex vasculatures across the tree of life, e.g. in the heart of every human reading this. Here we consider a minimal physical model of the heart mitral valve modeled as a flexible conical shell capable of flow rectification via collapse and…
Liana Chatterjee, Sulagna Chatterjee
Droplet-based microfluidics is the study of microfluidic device, where droplets are generated mainly using two methods i.e., active, and passive methods. The manipulation of these droplets in microfluidic channels is an immensely useful technology in various scientific fields such as biological, biomedical studies, and…
Authors not listed
Stable jet electrospinning (SJES) enables the incorporation of fluorescent colloidal 2D nanoplatelets (NPLs) into polymer fibers for potential optical applications and the manipulation of the orientation of the nanoplatelets. Three polymers with excellent optoelectronic properties are used as matrices, namely…
Barrett Smith, Sara Hashmi
Polymer flows through pores, nozzles and other small channels govern engineered and naturally occurring dynamics in many processes, from 3D printing to oil recovery in the earth's subsurface to a wide variety of biological flows. The crosslinking of polymers can change their material properties dramatically, and it is…
Olukayode Majekodunmi, Sara Hashmi
In suspension flows through microchannels with parallel walls, rigid particles form clogs that grow continuously in the upstream direction. However, introducing a slight taper to channel walls leads to a qualitatively different clogging mechanism. Clogs of rigid particles do not grow continuously in these tapered…
Farhad Sanaei, Pascal Bertsch, Juliette Lafosse, Sander C.G. Leeuwenburgh + 1 more
Reliable extrusion of viscoelastic hydrogels is crucial for technologies ranging from 3D (bio)printing to injectable therapeutics, yet current methods to characterize extrusion performance fail to mimic key processing conditions. Consequently, extrusion performance cannot be precisely predicted or controlled…
Aaron Winn, Eleni Katifori
Immersed nonlinear elements are prevalent in biological systems that require a preferential flow direction. A certain class of models is investigated where the fluid is driven by peristaltic pumping and the nonlinear elements are ideal valves that completely suppress backflow. This highly nonlinear system produces…
Authors not listed
In this paper we continue our previous investigation about the use of stress function in the flow of generalized Newtonian fluids through conduits of circular and non-circular (or/and multiply connected) cross sections where we inspect the flow of power law fluids in tubes of elliptical cross sections. We derive…
Meng-Chun Hsu, Mehran Mansouri, Nuzhet N.N. Ahamed, Indranil M. Joshi + 3 more
Controlled fluid flows are the hallmark feature of microfluidic culture systems and provide precise definition over the biophysical and biochemical microenvironment. Flow control is commonly achieved using displacement-based (e.g., syringe or peristaltic pumps) or pressure-based techniques. These methods offer complex…
Justin Kwok, Giridar Vishwanathan, Kyung Sun Park, Bijal Patel + 3 more
Fluid flow is an inherent aspect of solution processing of conjugated polymers. Much of the existing work investigating the effect of flow has been phenomenological, lacking a direct and quantitative connection between the flow gradients and measurable quantities of the conformation or alignment of the conjugated…
Keunhwan Park, Aude Tixier, Anneline H. Christensen, Sif Fink Arnbjerg-Nielsen + 2 more
'Sif Fink Arnbjerg-Nielsen' 'Maciej A. Zwieniecki' 'Kaare H. Jensen'] Fluid-structure interactions are ubiquitous in nature and technology. However, the systems are often so complex that numerical simulations or ad hoc assumptions must be used to gain insight into the details of the complex interactions between the…
Kristina Haase, Filippo Piatti, Minerva Marcano, Yoojin Shin + 4 more
Hemodynamics play a central role in the health and disease of the coronary and peripheral vascular systems. Vessel-lining endothelial cells are known mechanosensors, responding to disturbances in flow – with mechanosensitivity hypothesized to change in response to metabolic demands. The health of our smallest…