Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Heat transfer analysis of cellular heat exchanger based on a fresh fractal Vicsek model by Galerkin finite element method

View through CrossRef
The energy density is increasing in modern industry, and the lack of heat transfer efficiency is one of the fatal problems of current equipment, which seriously affects the improvement of production level. The cellular heat exchanger is a kind of heat exchanger used in different fields. It plays an irreplaceable role in energy saving, efficiency improvement and reducing pressure drop. However, when the geometric shape of the fractal heat exchanger is very complex, the heat transfer analysis is impossible or difficult to show. Therefore, the objective of this project is to solve the difficulty of analysis on complex fractal heat exchangers and have a better representation of the physics. A totally fresh tessellation method, which can be used to analyze complex fractal heat exchangers, is introduced in this essay. By the research process, surjective hole-fill maps for Vicsek fractal were established, and Vicsek fractal was represented by continuous tessellations, and the fractal Vicsek model was expressed by continuous subdivision. The transfer theory on fractals and Galerkin finite element method were used to analyze the heat transfer of fractals and tessellations. The results of two analyses, the fractal model and the tesselation model, were almost the same, and confirm the function of the tessellation method in the analysis of complex heat exchangers. Furthermore, it provides a new way to solve the difficult problem of heat transfer analysis of complex geometric heat exchangers.
Title: Heat transfer analysis of cellular heat exchanger based on a fresh fractal Vicsek model by Galerkin finite element method
Description:
The energy density is increasing in modern industry, and the lack of heat transfer efficiency is one of the fatal problems of current equipment, which seriously affects the improvement of production level.
The cellular heat exchanger is a kind of heat exchanger used in different fields.
It plays an irreplaceable role in energy saving, efficiency improvement and reducing pressure drop.
However, when the geometric shape of the fractal heat exchanger is very complex, the heat transfer analysis is impossible or difficult to show.
Therefore, the objective of this project is to solve the difficulty of analysis on complex fractal heat exchangers and have a better representation of the physics.
A totally fresh tessellation method, which can be used to analyze complex fractal heat exchangers, is introduced in this essay.
By the research process, surjective hole-fill maps for Vicsek fractal were established, and Vicsek fractal was represented by continuous tessellations, and the fractal Vicsek model was expressed by continuous subdivision.
The transfer theory on fractals and Galerkin finite element method were used to analyze the heat transfer of fractals and tessellations.
The results of two analyses, the fractal model and the tesselation model, were almost the same, and confirm the function of the tessellation method in the analysis of complex heat exchangers.
Furthermore, it provides a new way to solve the difficult problem of heat transfer analysis of complex geometric heat exchangers.

Related Results

Design of Cross Flow Heat Exchanger Using Performance Charts
Design of Cross Flow Heat Exchanger Using Performance Charts
The manuscript reviews the various steps involved in the design of a cross flow heat exchanger. Performance charts describing the thermal performance of the heat exchanger in terms...
ANALISIS EFEKTIVITAS LIQUID SECTION HEAT EXCHANGER DENGAN TUBE IN TUBE HEAT EXCHANGER DARI SISI APLIKATIF
ANALISIS EFEKTIVITAS LIQUID SECTION HEAT EXCHANGER DENGAN TUBE IN TUBE HEAT EXCHANGER DARI SISI APLIKATIF
Penelitian ini menjelaskan tentang aplikasidari LSHX yang lebih baik daripada jenis heat exchanger lainnyaagar penggunaan penukar kalor tipe ini lebih efektif dan dapat diaplikasik...
Heat Exchanger Design and Optimization
Heat Exchanger Design and Optimization
Heat exchangers are devices that transfer heat energy between fluids by utilizing heat transfer modes of conduction and convection. The shell and tube heat exchanger configuration ...
Plate heat exchanger – inertia flywheel performance in loss of flow transient
Plate heat exchanger – inertia flywheel performance in loss of flow transient
Abstract One of the most versatile types of heat exchangers used is the plate heat exchanger. It has principal advantages over other heat exchangers in that plates c...
Parametric Modeling and Economic Analysis of a 2MWth 3-Stream sCO2 Heat Exchanger
Parametric Modeling and Economic Analysis of a 2MWth 3-Stream sCO2 Heat Exchanger
Abstract This paper presents the design and cost optimization of a novel 2MWth 3-stream sCO2 plate-fin heat exchanger. This heat exchanger design is unique in that i...
Dynamic Rigid Fractal Spacetime Manifold Theory: PART C
Dynamic Rigid Fractal Spacetime Manifold Theory: PART C
This paper integrates fractal geometry, fractal measures, and their applications across multiple fields of physics to systematically explore fractal spacetime and its modifications...

Back to Top