Improving the efficiency of a gas-fueled ship power plant using a Waste Heat Recovery metal hydride system

被引:0
|
作者
Cherednichenko, Oleksandr [1 ]
Tkach, Mykhaylo [2 ]
Timoshevskiy, Boris [3 ]
Havrysh, Valerii [4 ]
Dotsenko, Serhii [5 ]
机构
[1] Admiral Makarov Natl Univ Shipbldg, Operat Ships Power Plants & Heat Power Dept, 9 Heroiv Ukraine Ave, UA-54025 Mykolayiv, Ukraine
[2] Admiral Makarov Natl Univ Shipbldg, Dept Engn Mech & Mech Technol, 9 Heroiv Ukraine Ave, UA-54025 Mykolayiv, Ukraine
[3] Admiral Makarov Natl Univ Shipbldg, Dept Internal Combust Engines Plants & Tech Explo, 9 Heroiv Ukraine Ave, UA-54025 Mykolayiv, Ukraine
[4] Mykolay Natl Agr Univ, Dept Tractors & Agr Machinery Operating & Mainten, 9 Georgiy Gongadze St, UA-54020 Mykolayiv, Ukraine
[5] Admiral Makarov Natl Univ Shipbldg, Pervoma Polytech Inst, 109 Odeska St, UA-55202 Pervomaisk, Mykolayiv Regio, Ukraine
关键词
waste heat recovery; low-speed engine; metal-hydride; hydrogen; LNG-powered ship; total waste heat utilization factor;
D O I
10.17402/346
中图分类号
U6 [水路运输]; P75 [海洋工程];
学科分类号
0814 ; 081505 ; 0824 ; 082401 ;
摘要
Due to environmental, energy, and operating cost constraints, the number of liquefied natural gas (LNG)-powered ships is increasing. To avoid decreasing the thermal efficiency of two-stroke, low-speed diesel engines, high-pressure gas injection is used. The specific energy consumption of a gas fuel compressor is around 0.35 kWh/kg, which has a negative impact on the efficiency of ship power plants. To reduce the primary energy consumption of a gas fuel supply system, waste heat recovery (WHR) technologies may be used. This study investigated whether WHR metal hydride technology was suitable for improving the efficiency of low-grade heat waste in marine diesel engines. The key factors of this technology were revealed, and the design scheme was described. Working fluids were also analyzed, and a mathematical model of a WHR metal hydride plant was developed, and the results were represented. The calculations showed that the above technology could increase the operating power of a propulsion plant by 5.7-6.2%. The results demonstrate the possibility of applying WHR metal hydride equipment for gas fuel compressor drives in LNG-powered ships. The novelty of this study lies in the investigation of metal hydride technology for application in the waste heat recovery systems of LNG-powered ships.
引用
收藏
页码:9 / 15
页数:7
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