Design and thermal analysis of a new multi-segmented mini channel based radiant ceiling cooling panel

被引:0
|
作者
Radwan, Ali [1 ,2 ]
Katsura, Takao [1 ]
Ding, Lan [3 ]
Serageldin, Ahmed A. [1 ,4 ]
EL-Seesy, Ahmed I. [5 ,6 ]
Nagano, Katsunori [1 ]
机构
[1] Division of Human Environmental Systems, Faculty of Engineering, Hokkaido University, N13-W8, Kita-ku, Sapporo,060-8628, Japan
[2] Mechanical Power Engineering Department, Mansoura University, El-Mansoura,35516, Egypt
[3] Graduate School of Engineering, Hokkaido University, Sapporo,Hokkaido,060-8628, Japan
[4] Mechanical Power Engineering Department, Faculty of Engineering at Shoubra, Benha University, Shoubra,11629, Egypt
[5] Department of Mechanical Engineering, Benha Faculty of Engineering, Benha University, Benha,Qalubia,13512, Egypt
[6] Institute for Energy Research, Jiangsu University, Zhenjiang,212013, China
来源
Journal of Building Engineering | 2021年 / 40卷
关键词
Thermoanalysis; -; Cooling; Testing;
D O I
暂无
中图分类号
学科分类号
摘要
Cooling radiant ceiling panel (CRCP) have been dramatically applied in modern buildings. Therefore, the key aim of this article is to recommend a new multi-segmented mini-channel-based CRCP with four distinct designs to compete with the traditional flat sheet-and-tube CRCP. In these designs, the panel is divided into multi-strips wide mini-channel. These segments are integrated into the room with a different inclination angles. This permits the designers to enlarge the number of segments or the panel area for the same constrained ceiling area. Two different 3D CFD models are developed and validated. The first model is a conjugate heat transfer model used to compare the thermo-hydraulic performance of the sheet and tube CRCP with the new proposed mini-channel-based CRCP. The second model is utilized to integrate the new mini-channel with different designs for the standard testing methods. The findings demonstrate that the mini-channel CRCR accomplish high panel temperature uniformity, higher cooling capacity, and lower power consumption in comparison with the traditional sheet and tube panels. Furthermore, the multi-segmented mini-channel CRCP inclined with ± 45°, V- shape, with 83% increased area accomplish a 51% boost in the cooling capacity at the same indoor temperature. Also, it is worth declaring that this design can be conducted at a panel temperature of 18.8 °C to accomplish the same cooling capacity and the identical indoor air temperature obtained by a flat CRCP with panel temperature of 15.8 °C. © 2021 Elsevier Ltd
引用
收藏
相关论文
共 50 条
  • [21] Dynamic variation of surface temperatures on the radiant ceiling cooling panel based on the different supply water temperature adjustments
    Jin, Wufeng
    Ma, Jingda
    Jia, Lizhi
    Wang, Zhiqiang
    SUSTAINABLE CITIES AND SOCIETY, 2020, 52
  • [22] Comparitive Analysis of Thermal Comfort in a Hydronic Radiant Ceiling and Wall Panel System for Heating in South Korea
    Kim, Sung-im
    Lim, Jae-han
    Song, Seung-yeong
    Lee, Young-woon
    Kim, Kwang-woo
    ASHRAE TRANSACTIONS 2014, VOL 120, PT 1, 2014, 120
  • [23] Examination of a versatile thermal calculation method for space conditioning with ceiling slit radiant panels and cooling analysis
    Shioya, Masaki
    Kohri, Kimiko
    AIJ Journal of Technology and Design, 2014, 20 (45) : 633 - 636
  • [24] Design and thermal performance assessment of water sink based thermoelectric radiant panel system for office cabinet cooling and heating
    Mishra, Gaurav
    Prajapati, Satyendra
    Prajapat, Mayankraj
    Mathur, Jyotirmay
    Prabhakar, Aneesh
    APPLIED THERMAL ENGINEERING, 2025, 262
  • [25] Analysis and Design of a Multi-Layered and Multi-Segmented Interior Permanent Magnet Motor by Using an Analytic Method
    Lim, Dong-Kuk
    Yi, Kyung-Pyo
    Woo, Dong-Kyun
    Yeo, Han-Kyeol
    Ro, Jong-Suk
    Lee, Cheol-Gyun
    Jung, Hyun-Kyo
    IEEE TRANSACTIONS ON MAGNETICS, 2014, 50 (06)
  • [26] Numerical and Experimental Investigation of a Thermoelectric-Based Radiant Ceiling Panel with Phase Change Material for Building Cooling Applications
    Seyednezhad, Mohadeseh
    Najafi, Hamidreza
    Kubwimana, Benjamin
    SUSTAINABILITY, 2021, 13 (21)
  • [27] Multi-objective design optimization for mini-channel cooling battery thermal management system in an electric vehicle
    Li, Wei
    Peng, Xiongbin
    Xiao, Mi
    Garg, Akhil
    Gao, Liang
    INTERNATIONAL JOURNAL OF ENERGY RESEARCH, 2019, 43 (08) : 3668 - 3680
  • [28] Design of multi-scroll chaotic attractor based on a novel multi-segmented memristor and its application in medical image encryption
    Zuo, Jiangang
    Wang, Meng
    Zhang, Jie
    MICROELECTRONIC ENGINEERING, 2024, 287
  • [29] Design method of radiant cooling area based on the relationship between human thermal comfort and thermal balance
    Gao, Song
    Li, Yang
    Zhao, Min
    Wang, Yuang
    Yang, Xiaohu
    Yang, Chun
    Jin, Liwen
    LEVERAGING ENERGY TECHNOLOGIES AND POLICY OPTIONS FOR LOW CARBON CITIES, 2017, 143 : 100 - 105
  • [30] Multi-Layer Mini-Channel and Ribbed Mini-Channel Based High Performance Cooling Configurations for Automotive Inverters-Part A: Design and Evaluation
    Parida, Pritish R.
    Ekkad, Srinath V.
    Ngo, Khai
    JOURNAL OF THERMAL SCIENCE AND ENGINEERING APPLICATIONS, 2013, 5 (03)