Radiative Flow of Energy Consumption with Varying Building Structures

Open Access

Year : 2023 | Volume : | : | Page : –
By

P.S.S. Nagalakshmi

  1. Assistant Professor School of Planning and Architecture Jawaharlal Nehru Architecture and Fine Arts University Mahaveer Marg Telangana India

Abstract

The current study deals with Radiative flow of energy consumption with varying building structures solved by boundary value problem. Application of heat transfer takes place in Industrial and Engineering sectors to overcome the difficulties which arise from radiations in building construction. This is shown by taking few unique shapes of buildings as examples which are ellipsoid, isohemi hexagon, isohemisphere and torus ring. The heat transfer taking places of these structural designs are considered for the study of nature of fluid flow in terms of convection, conduction, and radiation. Further the incident and refracted radiation parameters are estimated and used to study the behavior of fluid flow in diverging structural geometries. The concentration, temperature and velocity profiles are demonstrated with results acquired from converting the governing equations to ordinary differential equations with the suitable transformations which has been solved with BVP solver using python.

Keywords: Radiative flow, python, BVP solver, isohemi hexagon, isohemisphere and torous ring

How to cite this article: P.S.S. Nagalakshmi. Radiative Flow of Energy Consumption with Varying Building Structures. International Journal of Applied Nanotechnology. 2023; ():-.
How to cite this URL: P.S.S. Nagalakshmi. Radiative Flow of Energy Consumption with Varying Building Structures. International Journal of Applied Nanotechnology. 2023; ():-. Available from: https://journals.stmjournals.com/ijan/article=2023/view=92259

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Open Access Article
Volume
Received June 24, 2022
Accepted July 6, 2022
Published January 6, 2023