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新型便携式磁制冷系统的瞬态性能分析

Transient performance analysis of a novel design of portable magnetic refrigeration system.

作者信息

Kashyap Uddip, Kumar Ashish, Sardespande Vishal, Saha Sandip K

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Bombay, Mumbai 400076, India.

Department of Energy Science and Engineering, Indian Institute of Technology Delhi, Delhi 110016, India.

出版信息

Phys Fluids (1994). 2022 Jan;34(1):013611. doi: 10.1063/5.0077701. Epub 2022 Jan 20.

Abstract

The widely used ice chamber-based cold storage for the transportation and storage of vaccines has several disadvantages, including uncontrolled overall temperature, water accumulation, and frequent ice pack renewal. Therefore, in this work, we numerically studied a novel vaccine storage system by coupling magnetic refrigeration and ice packs developed by conserving the advantages of an ice-based system. A two-dimensional numerical model is developed to analyze the magnetohydrodynamic natural convection in the storage chamber. Gadolinium of 0.08 kg is used to produce a cooling power of 31.514 W and a coefficient of performance of 1.3. With the constant heat leaked of 0.828 W into the system with dimensions of (0.1 × 0.1) m, the average life of the ice pack of 0.75 kg is 1.03 h. By introducing the magnetocaloric effect, the life of the same ice pack can be infinite with no load. The dynamic mode decomposition analysis reveals that the most dominant fluid interaction occurs between the cooled gadolinium plate and the adjacent fluid, resulting in efficient cooling of the air chamber. The developed vaccine chamber design will significantly improve the existing ice pack system with a nominal increase in cost and system weight.

摘要

广泛使用的基于冰室的疫苗运输和储存冷藏设备存在若干缺点,包括整体温度不受控制、积水以及频繁更换冰袋。因此,在本研究中,我们通过结合磁制冷和冰袋,在保留冰基系统优点的基础上,对一种新型疫苗储存系统进行了数值研究。建立了一个二维数值模型,以分析储存室内的磁流体动力学自然对流。使用0.08千克钆产生31.514瓦的制冷量和1.3的性能系数。在尺寸为(0.1×0.1)米的系统中,恒定有0.828瓦的热量泄漏到系统中,0.75千克冰袋的平均使用寿命为1.03小时。通过引入磁热效应,在无负载情况下,相同冰袋的使用寿命可以是无限的。动态模式分解分析表明,最主要的流体相互作用发生在冷却的钆板和相邻流体之间,从而实现了气室的高效冷却。所开发的疫苗室设计将显著改进现有的冰袋系统,成本和系统重量名义上有所增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/57f6/8939550/333a9a3a1596/PHFLE6-000034-013611_1-g001.jpg

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