通过现场可再生能源发电减轻数据中心的环境负担

Matthew McMullen, A. Wemhoff
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引用次数: 0

摘要

数据中心的能源需求极大地加剧了水资源短缺和碳排放。了解现场可再生能源发电的使用情况是深入了解如何使数据中心更具可持续性的重要一步。这项新颖的研究以美国县为单位,在给定数据中心规模、用水水平和能源效率的情况下,考察了现场太阳能或风能对数据中心水资源稀缺利用效率(WSUE)和碳利用效率(CUE)的影响。分析发现了与基于电网的碳排放和水稀缺足迹相关的特定指标组合,从而能够预测在实施现场太阳能或风能时预期的改善效果。在阿巴拉契亚山脉西侧(如肯塔基州中部和东部)等现有电网碳排放量较高的地区,实施现场可再生能源对减少碳足迹的益处最大。与邻近地区(如加利福尼亚州北部)相比,缺水程度较低的县通常在减少缺水足迹方面获益最大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Data Center Environmental Burden Reduction Through On-Site Renewable Power Generation
The energy demands from data centers contribute greatly to water scarcity footprint and carbon emissions. Understanding the use of on-site renewable power generation is an important step to gain insight into making data centers more sustainable. This novel study examines the impact of on-site solar or wind energy on data center water scarcity usage effectiveness (WSUE) and carbon usage effectiveness (CUE) at a U.S. county scale for a given data center size, water consumption level, and energy efficiency. The analysis uncovers combinations of specific metrics associated with grid-based carbon emissions and water scarcity footprint that enable predictions of the improvements anticipated when implementing on-site solar or wind energy. The implementation of on-site renewables has the most benefit in reducing carbon footprint in areas with high existing grid-based emissions such as the western side of the Appalachian Mountains (e.g., central and eastern Kentucky). The largest benefit in reducing water scarcity footprint is generally seen in counties with low water scarcity compared to adjacent areas (e.g., northern California).
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