首页> 外文期刊>Energy and Buildings >Energy and emissions analysis of ice thermal energy storage in the western US
【24h】

Energy and emissions analysis of ice thermal energy storage in the western US

机译:美国西部冰热能存储的能源和排放分析

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

Energy storage systems provide a variety of benefits to the electricity sector, including taking better advantage of renewable electricity when available and smoothing demand by shifting peaks to times when electricity prices and demand are lower. When low electricity demand occurs during the nighttime, additional benefits of overnight energy storage can also occur. Lower nighttime ambient temperatures can lead to efficiency improvements throughout the grid, including power generators, transmission and distribution systems, and chillers. For ice thermal energy storage, these benefits have even been shown to enable net reductions in primary energy consumption compared to normal cooling operations. The energy and emissions impacts of ice storage depend strongly on the diurnal temperature variation and power fleet characteristics in a given region, but previous analysis only examined a single location with relatively high humidity. This study extends the previous analysis to arid regions with high diurnal temperature variation, using Phoenix, AZ and Flagstaff, AZ as case studies, and to a region with high solar penetration, using Los Angeles, CA as a case study. This study demonstrates that the larger temperature variations in Arizona lead to higher round-trip efficiencies, with average primary energy-based effective round-trip efficiencies of 127% in Flagstaff, 107% in Phoenix, and 90% in Los Angeles, with site round-trip efficiencies of 133%, 127%, and 99%, respectively. These high round-trip efficiencies result in net reductions in carbon emissions of 34% in Flagstaffand 24% in Phoenix, but an increase of 53% in Los Angeles due to the absence of solar production overnight. Additionally, the lower icemaking efficiency during warm daytime temperatures makes ice storage poorly-suited for storing excess solar generation compared to other storage approaches. However, the presence of a mature commercial market and the possibility of gaining over 100% effective round-trip efficiency create a strong case for ice thermal energy storage as an energy storage approach for reducing both primary energy consumption and carbon emissions, particularly if fleet efficiencies are higher and carbon intensities are lower overnight. (c) 2019 Elsevier B.V. All rights reserved.
机译:储能系统为电力部门带来各种好处,包括更好地利用可再生电力,并通过将高峰转移到电价和需求较低的时间来平滑需求。如果在夜间出现低电力需求,则隔夜储能的其他好处也会出现。较低的夜间环境温度可以提高整个电网的效率,包括发电机,输配电系统和冷却器。对于冰的热能存储,与常规的制冷操作相比,这些好处甚至已显示出可以净减少一次能源的消耗。储冰的能量和排放影响在很大程度上取决于给定区域的昼夜温度变化和电力车队特性,但先前的分析仅检查了湿度相对较高的单个位置。这项研究以亚利桑那州的菲尼克斯市和亚利桑那州的弗拉格斯塔夫为例,将先前的分析扩展到了昼夜温度变化较大的干旱地区,以加利福尼亚州的洛杉矶为例,将先前的分析扩展到了日照渗透率较高的地区。这项研究表明,亚利桑那州较大的温度变化会导致较高的往返效率,在弗拉格斯塔夫,基于一次能源的平均有效往返效率平均为127%,在凤凰城为107%,在洛杉矶为90%行程效率分别为133%,127%和99%。这些高的往返效率导致弗拉格斯塔夫的碳排放量净减少了34%,凤凰城的碳排放量减少了24%,而洛杉矶的碳排放量却减少了53%,这是因为没有过夜的太阳能生产。另外,在白天温暖的温度下较低的制冰效率使得与其他存储方法相比,冰存储不适合存储多余的太阳能。但是,成熟的商业市场的存在以及获得超过100%的有效往返效率的可能性为冰热能存储提供了强有力的理由,因为它既可以降低一次能源消耗,又可以减少碳排放,尤其是在提高车队效率的情况下一夜之间碳含量较高,而碳强度较低。 (c)2019 Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号