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Development of cooling technologies for SMES

机译:开发中小企业冷却技术

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A Superconducting Magnetic Energy Storage (SMES) system has good characteristics as energy storage equipment in electric power systems such as high efficiency, quick response and no deterioration in repetition operation. Since 1991, the Agency for National Resources and Energy Japan has carried out a national project to develop an SMES for power control in power systems. Moreover, SMES has been developed to bridge for instantaneous voltage dips since 2003. A field test of 5 MVA SMES for bridging instantaneous voltage dips was carried out on an advanced large liquid crystal TV plant in Kameyama from July 2003. Before that, a 10 MVA SMES system was working there. After the field test, the commercial SMES for instantaneous voltage dips is working there. In 2015, three commercial SMES units for bridging instantaneous voltage dips are operating in Japan. These SMESs are all equipped with metal superconducting coils. When considering cost-reduction, size-reduction, and maintenance of the SMES in the future, it is necessary to develop a SMES with a high-temperature superconductor and improve the efficiency of its cooling system. We have also developed and conducted operation tests of SMES with a Bi2212 oxide superconductor and high performance cryocooler which enable energy conservation operation by inverter control. In this paper, developed results on cooling systems and cryocooler for SMES are presented. (C) 2016 Elsevier Ltd. All rights reserved.
机译:超导磁能存储(SMES)系统具有良好的特性作为电力系统中的能量存储设备,例如高效率,快速响应,并且重复操作中没有恶化。自1991年以来,国家资源和能源机构日本开展了一个国家项目,为电力系统开发了用于电力控制的中小企业。此外,自2003年以来,SME已开发出用于桥接瞬时电压坡度。从2003年7月,在Kameyama的高级大型液晶电视厂进行了5个MVA中小企业进行瞬时电压跌幅的现场测试。在此之前,10个MVA中小企业系统在那里工作。在现场测试之后,商业中小企业用于瞬时电压坡度在那里工作。 2015年,用于桥接瞬时电压坡度的三个商业中小企业单位在日本运营。这些SMISS都配备了金属超导线圈。在考虑未来考虑降低成本,尺寸减少和中小企业的维护时,有必要开发具有高温超导体的中小企业,提高其冷却系统的效率。我们还通过BI2212氧化物超导体和高性能冷冻机开发和进行了SME的操作测试,该高性能低温冷却器通过逆变器控制能够节能运行。在本文中,提出了对SMES的冷却系统和低温冷却器产生的结果。 (c)2016 Elsevier Ltd.保留所有权利。

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