Design and analysis of the components of cryogenic extruder for producing liquid hydrogen

IF 1.8 3区 工程技术 Q3 PHYSICS, APPLIED Cryogenics Pub Date : 2024-12-30 DOI:10.1016/j.cryogenics.2024.104021
Vishal Gupta, Hemang Agravat, Samiran S. Mukherjee, Avijit Dewasi, Jyoti S. Mishra, Pratik A. Nayak, Paresh Panchal, Moni Banaudha, Ranjana Gangradey
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引用次数: 0

Abstract

The Cryogenic Extruder (CE) is an extruder technology which can continuously produce solid rods of hydrogen and its isotopes. The solid rod is further cut into small cylindrical pieces called pellets, which are used for the fuelling of the long-pulse fusion reactors by injecting at high velocity into the magnetically confined, hot plasma, for the core-fuelling and D-T reaction. The design and analysis of a cryogenic extruder involves optimization of the various parameters of its different components such as precoolers, liquefier and solidifier compatible with cryogenic temperature operation. In this work, a design approach and Computation Fluid Dynamics (CFD) analysis of the components of extruder system is presented. The liquefier is designed to operate at a temperature of < 21 K and cooled using the 2nd stage of the cold head of a GM cryocooler. It has a compact shell which has an array of fins for the cooling down and liquefaction of the hydrogen gas to liquid. Theoretically, the surface temperature of 20.4 K is sufficient to produce liquid for the extrusion rate of 500 mm3/s of solid hydrogen but the CFD studies showed that the liquefier can produce the liquid for up to 1.75E-5 kg/s i.e., equivalent to 200 mm3/s of solid hydrogen based on the available cooling capacity of a cryocooler.
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来源期刊
Cryogenics
Cryogenics 物理-热力学
CiteScore
3.80
自引率
9.50%
发文量
0
审稿时长
2.1 months
期刊介绍: Cryogenics is the world''s leading journal focusing on all aspects of cryoengineering and cryogenics. Papers published in Cryogenics cover a wide variety of subjects in low temperature engineering and research. Among the areas covered are: - Applications of superconductivity: magnets, electronics, devices - Superconductors and their properties - Properties of materials: metals, alloys, composites, polymers, insulations - New applications of cryogenic technology to processes, devices, machinery - Refrigeration and liquefaction technology - Thermodynamics - Fluid properties and fluid mechanics - Heat transfer - Thermometry and measurement science - Cryogenics in medicine - Cryoelectronics
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