Nonconventional tow-steered pressure vessels for hydrogen storage

被引:5
作者
Daghighi, Shahrzad [1 ]
Weaver, Paul M. [1 ]
机构
[1] Univ Limerick, Bernal Inst, Sch Engn, Limerick V94T9PX, Ireland
基金
爱尔兰科学基金会;
关键词
Pressure vessels; Hydrogen storage; Stiffness tailoring; Tow steering; COMPOSITE; OPTIMIZATION; DESIGN;
D O I
10.1016/j.compstruct.2024.117970
中图分类号
O3 [力学];
学科分类号
08 ; 0801 ;
摘要
Hydrogen has high gravimetric energy density with accompanying low carbon footprint with potential to replace fossil fuels. Hydrogen at ambient temperature is in the gaseous state and should be stored in pressure vessels that can withstand pressures as large as 70 MPa, making their design challenging. Developments in manufacturing techniques for composite structures enable varying the fibre tow trajectory throughout the structure to improve the structural performance. These structures are known as variable stiffness composite structures. This technique has recently been used to develop a design method for suppressing inefficient bending in non-spherical pressure vessels. This study employs the bend -free design method for gaseous hydrogen pressure vessels and investigates the potential advantages of this nonconventional design compared to conventional designs by assessing their Hydrogen Weight Efficiency (HWE). Results show that the HWE of the bend -free variable stiffness pressure vessel is 18.6% larger than the HWE of the best conventional design studied.
引用
收藏
页数:11
相关论文
共 32 条
[1]   Design of variable stiffness composite panels for maximum fundamental frequency using lamination parameters [J].
Abdalla, Mostafa M. ;
Setoodeh, Shahriar ;
Gurdal, Zafer .
COMPOSITE STRUCTURES, 2007, 81 (02) :283-291
[2]   A study of residual burst strength of composite over wrapped pressure vessel due to low velocity impact [J].
Alam, Shah ;
Yandek, Gregory ;
Lee, Richard Chris ;
Mabry, Joseph .
INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING, 2021, 194
[3]   On feasible regions of lamination parameters for lay-up optimization of laminated composites [J].
Bloomfield, M. W. ;
Diaconu, C. G. ;
Weaver, P. M. .
PROCEEDINGS OF THE ROYAL SOCIETY A-MATHEMATICAL PHYSICAL AND ENGINEERING SCIENCES, 2009, 465 (2104) :1123-1143
[4]   Three-dimensional invariant-based failure criteria for fibre-reinforced composites [J].
Camanho, P. P. ;
Arteiro, A. ;
Melro, A. R. ;
Catalanotti, G. ;
Vogler, M. .
INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 2015, 55 :92-107
[5]   SHELL CONFIGURATIONS TO SUPPRESS BENDING [J].
CHICUREL, R ;
WU, Y .
JOURNAL OF APPLIED MECHANICS, 1970, 37 (01) :201-&
[6]   In-line variable spreading of carbon fibre/thermoplastic pre-preg tapes for application in automatic tape placement [J].
Clancy, Gearoid ;
Peeters, Daniel ;
O'Higgins, Ronan M. ;
Weaver, Paul M. .
MATERIALS & DESIGN, 2020, 194 (194)
[7]   On crushing responses of filament winding CFRP/aluminum and GFRP/CFRP/aluminum hybrid structures [J].
Cui, Zhengliang ;
Liu, Qiang ;
Sun, Yubo ;
Li, Qing .
COMPOSITES PART B-ENGINEERING, 2020, 200 (200)
[8]  
Daghighi S, 2022, AIAA SCITECH 2022 FO, P0869, DOI [10.2514/6.2022-0869, DOI 10.2514/6.2022-0869]
[9]  
Daghighi S, 2021, Ph.D. thesis
[10]  
Daghighi S., 2021, P AM SOC COMPOSITES, DOI [10.12783/asc36/35889, DOI 10.12783/ASC36/35889]