In this research paper we examined Darcy-Forchheimer three-dimensional micro-polar nanofluid flow of carbon nanotubes (CNTs) based on water. The nanofluid flow is examined between parallel and horizontal plates in a rotating system. The thermal radiation impact is taken to be varying in the absorption/generation for the purpose, to see the concentration as well as the temperature modifications between the nanofluid and the surfaces. The micro-polar nanofluid in permeable media is designated by assuming the Darcy-Forchheimer model where drenching permeable space obeys the Darcy-Forchheimer expression. For Skin friction coefficient it is perceived to be larger for weak concentration and smaller for strong concentration. The impacts of the por...
Here modeling and computations are presented to introduce the novel concept of Darcy-Forchheimer thr...
This study is focused towards analyzing the heat and flow movement among two stretching rotating dis...
In this article, we explored the impact of magnetic field on nanofluid flow in the presence of SWCNT...
The current study deals with Darcy-Forchheimer three-dimensional micropolar rotational nanofluid flo...
Several important characteristics of CNTs (carbon nanotubes) like excellent electrical conductivitie...
Here we are concerned with the Darcy-Forchheimer three-dimensional flow of carbon nanotubes in a rot...
Purpose: In this article, we scrutinized the impacts of non-linear thermal radiations on SWCNT−TiO2&...
The main purpose of this investigation is to inspect the innovative conception of the magneto hydrod...
The study analyzed the heat transfer of water-based carbon nanotubes in non-coaxial rotation flow af...
The steady three-dimensional rotating flow past a stretching/shrinking surface in water and kerosene...
This article investigate additional physical results about the enhancement of thermophysical charact...
The main objective of this article is to study the inventive conception of the electrical Magneto hy...
A modern development in the field of fluid dynamics emphasizes on nanofluids which maintain remarkab...
The present article examines Darcy-Forchheimer flow of water-based carbon nanotubes. Flow is induced...
Nanofluid is one of the significant developments for having an efficient heat transport process. Its...
Here modeling and computations are presented to introduce the novel concept of Darcy-Forchheimer thr...
This study is focused towards analyzing the heat and flow movement among two stretching rotating dis...
In this article, we explored the impact of magnetic field on nanofluid flow in the presence of SWCNT...
The current study deals with Darcy-Forchheimer three-dimensional micropolar rotational nanofluid flo...
Several important characteristics of CNTs (carbon nanotubes) like excellent electrical conductivitie...
Here we are concerned with the Darcy-Forchheimer three-dimensional flow of carbon nanotubes in a rot...
Purpose: In this article, we scrutinized the impacts of non-linear thermal radiations on SWCNT−TiO2&...
The main purpose of this investigation is to inspect the innovative conception of the magneto hydrod...
The study analyzed the heat transfer of water-based carbon nanotubes in non-coaxial rotation flow af...
The steady three-dimensional rotating flow past a stretching/shrinking surface in water and kerosene...
This article investigate additional physical results about the enhancement of thermophysical charact...
The main objective of this article is to study the inventive conception of the electrical Magneto hy...
A modern development in the field of fluid dynamics emphasizes on nanofluids which maintain remarkab...
The present article examines Darcy-Forchheimer flow of water-based carbon nanotubes. Flow is induced...
Nanofluid is one of the significant developments for having an efficient heat transport process. Its...
Here modeling and computations are presented to introduce the novel concept of Darcy-Forchheimer thr...
This study is focused towards analyzing the heat and flow movement among two stretching rotating dis...
In this article, we explored the impact of magnetic field on nanofluid flow in the presence of SWCNT...