ESS accelerator cryogenic plant

Xilong Wang, J. Weisend, T. Koettig, W. Hees, C. Darve
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引用次数: 5

Abstract

The European Spallation Source (ESS) is a neutron-scattering facility being built with extensive international collaboration at Lund, Sweden. The ESS accelerator will deliver protons with 5 MW of power to the target at 2.5 GeV, with a nominal current of 50 mA. The superconducting section of the ESS accelerator consists of a total of 208 SRF cavities in cryomodules (CMs) cooled with superfluid helium to 2 K. The CM contains one thermal radiation shield operating from 40 to 50 K. Additionally, 4.5-K gas helium is used to provide forced cooling to the fundamental power couplers for the cavities. The cryogenic cooling for these CMs is provided by one cryogenic plant connected to CMs via a cryogenic distribution line. This article describes the requirements and preliminary design decisions for the ESS accelerator cryoplant. The expected capacity, temperature levels and operating modes are given. Design choices to address important issues of turn-down capability, high availability, and timely restart after plant trips are discussed. Procurement options and schedules are described.
ESS加速器低温装置
欧洲散裂源(ESS)是在瑞典隆德与广泛的国际合作建立的中子散射设施。ESS加速器将以2.5 GeV的速度向目标发射功率为5兆瓦的质子,标称电流为50毫安。ESS加速器的超导部分由低温模块(CMs)中的208个SRF腔组成,用超流氦冷却到2 K。CM包含一个热辐射屏蔽,工作范围为40至50 K。此外,4.5 k的氦气用于为腔体的基本功率耦合器提供强制冷却。这些CMs的低温冷却由一个低温工厂提供,该低温工厂通过低温配电线连接到CMs。本文介绍了ESS加速器低温装置的要求和初步设计决策。给出了预期容量、温度水平和工作模式。讨论了解决关断能力、高可用性和工厂跳闸后及时重启等重要问题的设计选择。描述了采购方案和时间表。
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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来源期刊
HVAC&R Research
HVAC&R Research 工程技术-工程:机械
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