Heat transfer and pressure drop characteristics of heat exchangers based on triply periodic minimal and periodic nodal surfaces

被引:0
|
作者
Iyer, Jaisree [1 ]
Moore, Thomas [1 ]
Nguyen, Du [1 ]
Roy, Pratanu [1 ]
Stolaroff, Joshuah [1 ]
机构
[1] Lawrence Livermore National Laboratory, Livermore, CA, United States
关键词
Heat transfer performance - Friction - Laminar flow - Heat exchangers - Reynolds number - Structural properties - Mass transfer - Thermodynamic properties;
D O I
暂无
中图分类号
学科分类号
摘要
The popularity of additive manufacturing has increased interest in the use of triply periodic minimal surfaces (TPMS) in engineering applications due to their potential for superior mechanical, heat and mass transfer properties. Periodic nodal surfaces (PNS) are a class of periodic continuous surfaces that also divide the space into non-intersecting, smooth and continuous domains like TPMS and can potentially have superior mechanical, heat and mass transfer properties. To evaluate the potential for superior performance, in this manuscript we characterize the flow and heat transfer properties of seven TPMS and PNS based structures by numerically computing the friction factors and Nusselt numbers in the laminar flow regime. This is the first study to evaluate the use of PNS as heat exchangers. In addition, it adds to the limited quantitative data available on the flow and thermal properties of TPMS. The friction factors associated with most of the TPMS and PNS based structures in this study are about an order of magnitude higher than that for laminar flow in tubes. These structures also had higher Nusselt numbers compared to tubes, with the enhancement increasing with increase in Reynolds number. Among the TPMS and PNS studied, Schwarz-D had the best heat transfer performance while Schwarz-P was the poorest performing structure. Basic heat exchanger design calculations showed that to remove the same amount of heat and operate under the same pressure conditions, the Schwarz-D based heat exchanger was 3–10 times smaller than a tubular heat exchanger. This shows how TPMS or PNS can be used to design heat exchangers with superior performance, especially in applications where space and weight are at a premium. © 2022 The Authors
引用
收藏
相关论文
共 50 条
  • [1] Heat transfer and pressure drop characteristics of heat exchangers based on triply periodic minimal and periodic nodal surfaces
    Iyer, Jaisree
    Moore, Thomas
    Nguyen, Du
    Roy, Pratanu
    Stolaroff, Joshuah
    APPLIED THERMAL ENGINEERING, 2022, 209
  • [2] Convective heat transfer correlations for Triply Periodic Minimal Surfaces based heat exchangers
    Brambati, Giovanni
    Guilizzoni, Manfredo
    Foletti, Stefano
    APPLIED THERMAL ENGINEERING, 2024, 242
  • [3] Experimental investigation on heat transfer characteristics of copper heat exchangers based on triply periodic minimal surfaces (TPMS)
    Qian, Chenyi
    Wang, Jiaxuan
    Zhong, Haozhang
    Qiu, Xiang
    Yu, Binbin
    Shi, Junye
    Chen, Jiangping
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2024, 152
  • [4] Assessment of flow and heat transfer of triply periodic minimal surface based heat exchangers
    Wang, Jinghan
    Chen, Kai
    Zeng, Min
    Ma, Ting
    Wang, Qiuwang
    Cheng, Zhilong
    ENERGY, 2023, 282
  • [5] Investigation of Heat Transfer Augmentation with Triply Periodic Minimal Surfaces as Heat Transfer Surfaces
    Patil, Sudish
    Krishnan, Shankar
    PROCEEDINGS OF THE 25TH NATIONAL AND 3RD INTERNATIONAL ISHMT-ASTFE HEAT AND MASS TRANSFER CONFERENCE, IHMTC 2019, 2019,
  • [6] Design, flow characteristics and performance evaluation of bioinspired heat exchangers based on triply periodic minimal surfaces
    Liang, Dong
    Shi, Chenwei
    Li, Weihong
    Chen, Wei
    Chyu, Minking K.
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2023, 201
  • [7] Forced convection heat transfer in heat sinks with topologies based on triply periodic minimal surfaces
    Khalil, Mohamad
    Ali, Mohamed I. Hassan
    Khan, Kamran A.
    Abu Al-Rub, Rashid
    CASE STUDIES IN THERMAL ENGINEERING, 2022, 38
  • [8] Heat transfer enhancement of water-cooled triply periodic minimal surface heat exchangers
    Li, Wenguang
    Li, Weihong
    Yu, Zhibin
    APPLIED THERMAL ENGINEERING, 2022, 217
  • [9] A new approach for heat transfer coefficient determination in triply periodic minimal surface-based heat exchangers
    Kruzel, M.
    Dutkowski, K.
    Bohdal, T.
    Litwin, A.
    Sawicki, J.
    Kepa, E.
    INTERNATIONAL COMMUNICATIONS IN HEAT AND MASS TRANSFER, 2024, 157
  • [10] Triply periodic minimal surfaces based topology optimization for the hydrodynamic and convective heat transfer
    Xia, Qing
    Zhu, Junxia
    Yu, Qian
    Kim, Junseok
    Li, Yibao
    COMMUNICATIONS IN NONLINEAR SCIENCE AND NUMERICAL SIMULATION, 2024, 131