Thermoelectric generation for waste heat recovery: Application of a system level design optimization approach via Taguchi method

被引:54
作者
Ji, Dongxu [1 ]
Wei, Zhongbao [2 ]
Mazzoni, Stefano [2 ]
Mengarelli, Marco [2 ]
Rajoo, Srithar [5 ]
Zhao, Jiyun [3 ]
Pou, Josep [1 ]
Romagnoli, Alessandro [4 ]
机构
[1] Nanyang Technol Univ, Sch Elect & Elect Engn, Singapore, Singapore
[2] Nanyang Technol Univ, Energy Res Inst NTU, Singapore, Singapore
[3] City Univ Hong Kong, Dept Mech & Biomed Engn, Hong Kong, Hong Kong, Peoples R China
[4] Nanyang Technol Univ, Sch Mech & Aerosp Engn, Singapore, Singapore
[5] Univ Teknol Malaysia, UTM Ctr Low Carbon Transport LoCARtic, Johor Baharu, Malaysia
关键词
Thermoelectric generator; Waste heat recovery; Taguchi method; System optimization; Thermoelectric module; EXCHANGERS;
D O I
10.1016/j.enconman.2018.06.016
中图分类号
O414.1 [热力学];
学科分类号
摘要
Thermoelectric generator is a solid-state energy converter which can convert waste heat directly into electricity. During the past decades, thermoelectric materials have been widely investigated whereas the integrated design of thermoelectric generators have been less studied. This paper proposes and implements a framework for the design of thermoelectric generators, consisting of thermoelectric modules and heat exchangers, based on the Taguchi method. As compared with previous researches which optimize the thermoelectric module alone and assume fixed temperature or fixed heat fluxes for the thermoelectric modules, this work proposes a methodology to optimize the thermoelectric module and the heat exchanger together. Five design parameters (namely the height, the fill-ratio, the ratio of cross-sectional area of n-type material over p-type material of thermoelectric module, the length and the material of the heat exchanger) were analyzed for two different applications, waste heat recovery from marine and automotive engines. In order to perform the analysis, a L-27 (3(5)) orthogonal array was employed to assess all of the design parameters returning the maximum output power. By analysis of variance, it is found that the thermoelectric module height is the most important design parameter contributing for the 69.6% and 30.25% in automotive and marine application, respectively. And the optimal design parameter set are also determined in both applications.
引用
收藏
页码:507 / 516
页数:10
相关论文
共 24 条
[1]  
Angrist S.W., 1976, Direct energy conversion
[2]   Cooling, heating, generating power, and recovering waste heat with thermoelectric systems [J].
Bell, Lon E. .
SCIENCE, 2008, 321 (5895) :1457-1461
[3]  
Bergman T.L., 2011, Introduction to Heat Transfer, DOI DOI 10.1016/J.APPLTHERMALENG.2011.03.022
[4]   Performance optimization of a two-stage semiconductor thermoelectric-generator [J].
Chen, LG ;
Li, J ;
Sun, FR ;
Wu, C .
APPLIED ENERGY, 2005, 82 (04) :300-312
[5]   Performance analysis and optimum operation of a thermoelectric generator by Taguchi method [J].
Chen, Wei-Hsin ;
Huang, Shih-Rong ;
Lin, Yu-Li .
APPLIED ENERGY, 2015, 158 :44-54
[6]  
DOE U., 2008, Waste heat recovery: Techonology and opportunities in us industry
[7]   A review on thermoelectric renewable energy: Principle parameters that affect their performance [J].
Elsheikh, Mohamed Hamid ;
Shnawah, Dhafer Abdulameer ;
Sabri, Mohd Faizul Mohd ;
Said, Suhana Binti Mohd ;
Hassan, Masjuki Haji ;
Bashir, Mohamed Bashir Ali ;
Mohamad, Mahazani .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2014, 30 :337-355
[8]  
Gnielinski V., 1975, Forschung im Ingenieurwesen, V41, P8, DOI DOI 10.1007/BF02559682
[9]   Recent development and application of thermoelectric generator and cooler [J].
He, Wei ;
Zhang, Gan ;
Zhang, Xingxing ;
Ji, Jie ;
Li, Guiqiang ;
Zhao, Xudong .
APPLIED ENERGY, 2015, 143 :1-25
[10]   A Simulation Study on a Thermoelectric Generator for Waste Heat Recovery from a Marine Engine [J].
Ji, Dongxu ;
Tseng, King Jet ;
Wei, Zhongbao ;
Zheng, Yun ;
Romagnoli, Alessandro .
JOURNAL OF ELECTRONIC MATERIALS, 2017, 46 (05) :2908-2914