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Environmental advantages of superconducting devices in distributed electricity-generation

机译:分布式发电中超导设备的环境优势

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Distributed generation (DG) is emerging as an alternative to a centralized electricity-generation system. The goals of DG include the minimization of the environmental impacts of energy production and introduction of new renewable energy-sources to the distribution network. Superconducting devices are also proposed for DG because of their high efficiencies as well as smaller size and more stable operation during peak loads. This study concentrates on the environmental benefits of superconducting machinery by comparing suitable devices with their competitors in DG-networks. Exploitable superconducting devices in DG include superconducting magnetic energy-storage (SMES), flywheels and cable systems. Life-cycle assessment (LCA) is used as a tool in comparisons of energy-storage devices suitable for DG: SMESs, flywheels and batteries. In LCA, all material inputs, energy consumptions, wastes, and emissions are assessed over the life-cycle of the product. Finally, a commercialization schedule for HTS-cables is presented and an unconventional concept for a DG-network is suggested for further examination.
机译:分布式发电(DG)逐渐成为集中式发电系统的替代产品。 DG的目标包括最大程度地减少能源生产对环境的影响,以及将新的可再生能源引入配电网络。还建议将超导设备用于DG,因为它们具有较高的效率,较小的尺寸以及在峰值负载期间的稳定运行。通过将合适的设备与其在DG网络中的竞争对手进行比较,本研究集中于超导机械的环境效益。 DG中的可利用超导设备包括超导磁储能(SMES),飞轮和电缆系统。生命周期评估(LCA)被用作比较适用于DG的储能设备(SMES,飞轮和电池)的工具。在LCA中,将在产品的整个生命周期中评估所有材料投入,能源消耗,废物和排放。最后,介绍了HTS电缆的商业化时间表,并建议了DG网络的非常规概念以供进一步检查。

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