CO2-based refrigeration system for the NFIRAOS optics enclosure

Adam S. Densmore, G. Herriot, J. Fitzsimmons, P. Byrnes, Ian Welle, Jarod Holma, Megan Tiedje, J. Burbee, C. Winter
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引用次数: 2

Abstract

Recent changes to the Montreal Protocol have led to the eventual phase-out of hydrofluorocarbon-based refrigerants due to their high global warming potential (GWP). TMT has thus transitioned from R507 (GWP ~ 3900) to CO2 (GWP =1) as the primary observatory supplied refrigerant. Thus, the cooling system for NFIRAOS (TMT’s first light adaptive optics system) was redesigned to work with this high pressure refrigerant. In this paper, we describe the key refrigeration requirements and present the updated design of the NFIRAOS cooling system, including its overall architecture, main components and safety related features. To de-risk aspects of the design and to assess vibration levels of the system (critical for the AO system performance) a prototype CO2 cooling system was built and characterized. Key measurement results are presented.
用于NFIRAOS光学外壳的二氧化碳制冷系统
最近对《蒙特利尔议定书》的修改导致氢氟碳化合物制冷剂因其高全球变暖潜势(GWP)而最终被淘汰。因此,TMT已经从R507 (GWP ~ 3900)过渡到CO2 (GWP =1)作为主要天文台提供的制冷剂。因此,NFIRAOS (TMT的第一个光自适应光学系统)的冷却系统被重新设计,以使用这种高压制冷剂。本文介绍了NFIRAOS冷却系统的主要制冷要求,并介绍了NFIRAOS冷却系统的更新设计,包括其总体结构、主要部件和安全相关特征。为了降低设计的风险并评估系统的振动水平(对AO系统性能至关重要),构建了一个原型CO2冷却系统并对其进行了表征。给出了关键的测量结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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