Comprehensive review in waste heat recovery in different thermal energy-consuming processes using thermoelectric generators for electrical power generation

被引:60
|
作者
Ochieng, Alfred Oloo [1 ]
Megahed, Tamer F. [2 ,3 ]
Ookawara, Shinichi [4 ]
Hassan, Hamdy [1 ,5 ]
机构
[1] Egypt Japan Univ Sci & Technol E JUST, Energy Resources Engn, Alexandria, Egypt
[2] Egypt Japan Univ Sci & Technol E JUST, Elect Power Engn, Alexandria 21934, Egypt
[3] Mansoura Univ, Fac Engn, Elect Engn Dept, Mansoura 35516, Egypt
[4] Tokyo Inst Technol, Dept Chem Sci & Engn, Tokyo, Japan
[5] Assiut Univ, Fac Engn, Mech Engn Dept, Assiut, Egypt
关键词
Thermoelectric generator; Waste heat recovery; Automobiles; Industrial application; Working principle; PERFORMANCE ANALYSIS; LEG GEOMETRY; EXHAUST-GAS; OPTIMIZATION; DESIGN; SYSTEM; ENGINE; MODEL; ENHANCEMENT; VEHICLE;
D O I
10.1016/j.psep.2022.03.070
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This paper presents a comprehensive review of recent studies in electrical power generation from various thermal-consuming processes. In particular, the paper concentrates on TEG technology in recovering waste heat from industrial applications such as chimneys and automotive engines. Studies conclude that TEGs have a lower conversion efficiency (ranging between 5% and 10%), leading to low power output. Also, they state that most of the available TEGs have low operating temperatures limiting their commercial use. Therefore, an effort is taken to understand the key parameters that influence the performance of a thermoelectric generator. It is shown that a large temperature difference across the module, high heat dissipation from the cold side of the TEG and using thermoelectric materials with a high figure of merit generally improve the performance of the thermoelectric generator system. TEG module's cold-side temperature has a large effect on the power output than the hot-side temperature. Several geometric optimization methods, such as flaps and heat spreaders under natural convection resulted in a 129% and 42% increase in TEG power output, respectively. The survey also shows that forced cooling using side-mounted fans produces 58.6% more power compared to the top-mounted fan on the heat sink. However, optimization in fan selection is required to ensure that the power produced by forced cooling is sufficient to run the fans and output higher than the natural convection cooling case. Several studies also show that most of the commercially available TEG modules made from Bismuth telluride suffer from low operating temperature (maximum of 2600 C) and have figure of merit of 1.2 maximum and low conversion efficiency (up to 5%). Recommendations are made to further research alternatives like SiGe alloys, clathrates, skutterudites, and complementary metal-oxide semiconductors with better temperature ranges and figures of merit. (C)& nbsp;2022 Institution of Chemical Engineers. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:134 / 154
页数:21
相关论文
共 50 条
  • [41] Power generation and thermal stress characterization of thermoelectric modules with different unileg couples by recovering vehicle waste heat
    Chen, Wei-Hsin
    Huang, Tzu-Hsuan
    Augusto, Gerardo Lumagbas
    Lamba, Ravita
    Maduabuchi, Chika
    Saw, Lip Huat
    JOURNAL OF CLEANER PRODUCTION, 2022, 375
  • [42] Integration of waste heat recovery with biomass thermal conversion processes: A review
    Asaad, Sara Maen
    Inayat, Abrar
    Ghenai, Chaouki
    Shanableh, Abdallah
    PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2024, 192 : 567 - 579
  • [43] Enhancement thermoelectric generators output power from heat recovery of chimneys by using flaps
    Khalil, Hesham
    Hassan, Hamdy
    JOURNAL OF POWER SOURCES, 2019, 443
  • [44] Experiments and modeling on thermoelectric power generators used for waste heat recovery from hot water pipes
    Wang, Jizhe
    Liu, Shuang
    Li, Liangliang
    INNOVATIVE SOLUTIONS FOR ENERGY TRANSITIONS, 2019, 158 : 1052 - 1058
  • [45] Geometric optimization of segmented thermoelectric generators for waste heat recovery systems using genetic algorithm
    Ge, Ya
    Lin, Yousheng
    He, Qing
    Wang, Wenhao
    Chen, Jiechao
    Huang, Si-Min
    ENERGY, 2021, 233
  • [46] Power generation of annular thermoelectric generator with silicone polymer thermal conductive oil applied in automotive waste heat recovery
    Yang, Wenlong
    Zhu, WenChao
    Du, Banghua
    Wang, Han
    Xu, Lamei
    Xie, Changjun
    Shi, Ying
    ENERGY, 2023, 282
  • [47] Waste Heat Recovery For Powering Mobile Devices Using Thermoelectric Generators And Evaporatively-cooled Heat Sink
    Ozeh, Michael
    Nnanna, A. G. Agwu
    PROCEEDINGS OF THE ASME INTERNATIONAL TECHNICAL CONFERENCE AND EXHIBITION ON PACKAGING AND INTEGRATION OF ELECTRONIC AND PHOTONIC MICROSYSTEMS, 2018, 2019,
  • [48] Model of Heat Exchangers for Waste Heat Recovery from Diesel Engine Exhaust for Thermoelectric Power Generation
    Baker, Chad
    Vuppuluri, Prem
    Shi, Li
    Hall, Matthew
    JOURNAL OF ELECTRONIC MATERIALS, 2012, 41 (06) : 1290 - 1297
  • [49] Model of Heat Exchangers for Waste Heat Recovery from Diesel Engine Exhaust for Thermoelectric Power Generation
    Chad Baker
    Prem Vuppuluri
    Li Shi
    Matthew Hall
    Journal of Electronic Materials, 2012, 41 : 1290 - 1297
  • [50] Thermal, Energy and Exergy Analysis of Thermoelectric Generator System for Waste Heat Recovery Applications
    Viorel, Ionescu
    JOURNAL OF ECOLOGICAL ENGINEERING, 2024, 25 (07): : 201 - 211