Development and parametric study of a 1kW class free-piston stirling cryocooler (FPSC) driven by a dual opposed linear compressor for LNG (Re)liquefaction

Author:

Park Jiho,In Sehwan,Ko Junseok,Kim Hyobong,Hong Yongju,Yeom Hankil,Park Seongje

Funder

Ministry of Trade, Industry & Energy

Korea Institute of Machinery and Materials

Publisher

Elsevier BV

Subject

Mechanical Engineering,Building and Construction

Reference22 articles.

1. Cryogenic Regenerative Heat Exchangers;Ackermann,1997

2. Application of the multi-objective optimization method for designing a powered Stirling heat engine: design with maximized power, thermal efficiency and minimized pressure loss;Ahmadi;Renew. Energy,2013

3. ATAL, 2018. Turbo-Brayton cryogenic systems|Air Liquide Advanced Technologies [WWW Document]. URLhttps://advancedtech.airliquide.com/turbo-brayton-cryogenic-systems(accessed 12.9.18).

4. Modified PSVL: a second order model for thermal simulation of stirling engines based on convective–polytropic heat transfer of working spaces;Babaelahi;Appl. Therm. Eng.,2015

5. Cryogenic Heat Transfer;Barron,2016

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