메뉴 건너뛰기
Library Notice
Institutional Access
If you certify, you can access the articles for free.
Check out your institutions.
ex)Hankuk University, Nuri Motors
Log in Register Help KOR
Subject

Study on the Flow Characteristics in the Channel with Corrugated Wall
Recommendations
Search
Questions

논문 기본 정보

Type
Proceeding
Author
YongHan Shin (경상대학교) ZhenHua Jin (경상대학교) S. Wibowo (경상대학교) Li XueSong (경상대학교) HanShik Chung (경상대학교) HyoMin Jeong (경상대학교)
Journal
The Korean Society For Power System Engineering 한국동력기계공학회 학술대회 논문집 2009年度 秋季學術大會 論文集
Published
2009.11
Pages
280 - 285 (6page)

Usage

cover
📌
Topic
📖
Background
🔬
Method
🏆
Result
Study on the Flow Characteristics in the Channel with Corrugated Wall
Ask AI
Recommendations
Search
Questions

Abstract· Keywords

Report Errors
In this paper, presented pressure drop characteristics in a channel of plate heat exchanger by experimental method. Plate Heat Exchanger(PHE) have become popular in chemical, power, food and refrigeration industries due to the efficient heat transfer performances, extremely compact design and flexibility of extend or modify to suit changed duty. In the experiment, test section constructed by two corrugated plates with 60 degree of chevron angle. Consequently, experiments carried out the pressure profile along 15 measure points according to mass flow rate. This results provided to investigate flow characteristics of PHE channel flow that highly turbulent even with low Reynolds number. Moreover, numerical simulation was compared with experimental results and present flow behavior in the test section.

Contents

Abstract
1. Introduction
2. Experimental setup
3. Experimental results and discussion
4. Numerical analysis and discussion
5. Conclusions
Acknowledgement
Reference

References (0)

Add References

Recommendations

It is an article recommended by DBpia according to the article similarity. Check out the related articles!

Related Authors

Frequently Viewed Together

Recently viewed articles

Comments(0)

0

Write first comments.

UCI(KEPA) : I410-ECN-0101-2013-550-000674915