Comparative evaluation of sizing of metal hydride (MH) hydrogen storage tank filled with different alloys

被引:0
|
作者
Hilali, Ismail [1 ]
机构
[1] Harran Univ, Dept Mech Engn, Fac Engn, Osmanbey Campus, TR-63300 Sanliurfa, Turkey
关键词
Hydrogen storage; metal hydrides; thermoeconomic optimization; OPTIMUM; OPTIMIZATION;
D O I
10.1080/15435075.2015.1089246
中图分类号
O414.1 [热力学];
学科分类号
摘要
This study presents a comparative analysis of sizing of metal hydride tank filled with different alloys. Alloys include solid solutions and intermetallic compounds of the generic families AB(5), AB(2), AB, A(2)B. The effects of the different alloys on the sizing of metal hydride hydrogen storage tanks are complicated and depend on many factors. In this paper, a thermoeconomic optimization analysis with a simple algebraic formula was presented for the estimation of optimum metal hydride tank surface area for heat transfer enhancement. The optimum area of the metal hydride tank filled with commercially available different alloys (LaN5, Ti0,98Zr0,02V0,43Fe0,09Cr0,05Mn1,5, TiFe, Mg2NiH4) was evaluated and compared by the developed method. The optimum net savings and the value of payback were determined for four alloys. It is found that mathematical model can be employed for the determination of optimum metal hydride tank design and increasing net savings according to alloy types. The optimum areas of the tanks filled with four alloys (LaN5, Ti0,98Zr0,02V0,43Fe0,09Cr0,05Mn1,5, TiFe, Mg2NiH4) were calculated as 0.136, 0.130, 0.133, and 0.173 m(2), respectively. The optimum net savings for tanks filled with four alloys (LaN5, Ti0,98Zr0,02V0,43Fe0,09Cr0,05Mn1,5, TiFe, Mg2NiH4) are about 461.0, 409.3, 419.6, and 979.6 $ and the values of payback are about 1.98, 2.1, 2.17, and 1.37 years, respectively. Excessive area of the metal hydride tank would not be as economical as the optimum tank area. Thermal management of metal hydride tank must be designed for optimum points calculated at which maximum savings occur.
引用
收藏
页码:911 / 917
页数:7
相关论文
共 50 条
  • [21] Metal hydride cylindrical tank for energy hydrogen storage: Experimental and computational modeling investigations
    Elkhatib, Rafik
    Louahlia, Hasna
    APPLIED THERMAL ENGINEERING, 2023, 230
  • [22] Numerical simulation on the storage performance of a phase change materials based metal hydride hydrogen storage tank
    Ye, Yang
    Lu, Jianfeng
    Ding, Jing
    Wang, Weilong
    Yan, Jinyue
    APPLIED ENERGY, 2020, 278
  • [23] A Newly Proposed Method for Hydrogen Storage in a Metal Hydride Storage Tank Intended for Maritime and Inland Shipping
    Lazar, Marian
    Mihalik, Ivan
    Brestovic, Tomas
    Jasminska, Natalia
    Toth, Lukas
    Dobakova, Romana
    Duda, Filip
    Kmet'ova, L'ubomira
    Hudak, Simon
    JOURNAL OF MARINE SCIENCE AND ENGINEERING, 2023, 11 (09)
  • [24] DESIGN CONCEPT AND THE PERFORMANCE OF A METAL HYDRIDE HYDROGEN STORAGE TANK IN TOTALIZED HYDROGEN ENERGY UTILIZATION SYSTEM
    Maeda, Tetsuhiko
    Nishida, Keiichi
    Yamazaki, Shiro
    Kawakami, Yoshiaki
    Masuda, Masao
    Tange, Manabu
    Hasegawa, Yasuo
    Ito, Hiroshi
    Nakano, Akihiro
    PROCEEDINGS OF THE ASME/JSME 8TH THERMAL ENGINEERING JOINT CONFERENCE 2011, VOL 2, 2011, : 307 - +
  • [25] Recent progress in hydrogen storage alloys for nickel/metal hydride secondary batteries
    Zhao, Xiangyu
    Ma, Liqun
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (11) : 4788 - 4796
  • [26] Multi-objective optimization of metal hydride hydrogen storage tank with phase change material
    Mostafavi, Seyed Alireza
    Hajabdollahi, Zahra
    Ilinca, Adrian
    THERMAL SCIENCE AND ENGINEERING PROGRESS, 2022, 36
  • [27] Numerical analysis on pulverization and self-densification for hydrogen storage performance of a metal hydride tank
    Lin, Xi
    Sun, Dongke
    Chen, Shuanglin
    Zhu, Qi
    Leng, Haiyan
    Li, Qian
    APPLIED THERMAL ENGINEERING, 2019, 161
  • [28] Thermomechanics of a metal hydride-based hydrogen tank
    Christian Lexcellent
    Guillaume Gay
    David Chapelle
    Continuum Mechanics and Thermodynamics, 2015, 27 : 379 - 397
  • [29] Thermomechanics of a metal hydride-based hydrogen tank
    Lexcellent, Christian
    Gay, Guillaume
    Chapelle, David
    CONTINUUM MECHANICS AND THERMODYNAMICS, 2015, 27 (03) : 379 - 397
  • [30] Finite element-based simulation of a metal hydride-based hydrogen storage tank
    Freni, A.
    Cipiti, F.
    Cacciola, G.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2009, 34 (20) : 8574 - 8582