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不同代际区域供热网络中数据中心余热利用情景的比较分析
Comparative analysis of scenarios of data center waste heat utilization for district heating networks of different generations
语言:
中文摘要
摘要 全球通信基础设施的增长为利用数据中心余热提供了重要机遇。本研究聚焦于分析和比较若干种情景——照常营业情景(BAU)、数据中心余热回收情景(WH),以及在余热回收基础上增加浅层钻孔热能储存以解决热需求与余热产生之间不匹配的情景(WH + BTES)——这些情景在代表不同代际区域供热(DH)网络的多种供热温度条件下进行评估。德国哥廷根北校区作为案例研究对象。我们采用定制的Python模型,结合pygfunction软件包和基于回归的热泵模型,用于评估地热钻孔场的热响应因子(g函数)并开展分析。结果表明,在WH情景下可满足约70%的供暖与制冷需求,在WH+BTES情景下额外还可满足约20%的需求。目前,WH情景在经济性方面最具前景,而WH+BTES情景则能够实现更高的二氧化碳减排量。敏感性分析进一步表明,若BTES的资本成本降低35%,且区域供热价格与电价之比提高至当前值的2.5倍,则储存余热可能变得具有经济可行性。针对WH情景,通过蒙特卡洛模拟确定了边际余热价格的范围。所获得的平均值分别为:当区域供热设计供水温度为120、95、70和48°C时,余热价格分别为48、56、90和93 €/MWh_wh。因此,若余热价格在所有网络温度下保持恒定,则低温区域供热运营商有望获得更高的利润。
English Abstract
Abstract The growth of global telecommunication infrastructure offers significant opportunities for harnessing data center waste heat. This study focuses on analyzing and comparing several scenarios — business as usual (BAU), data center waste heat recovery (WH), and WH complemented by a shallow borehole thermal energy storage addressing the mismatch between heat demand and waste heat production (WH + BTES) — under various district heating (DH) temperatures representing different generations of DH networks. The north campus in Göttingen serves as a case study. We used a customized Python model, incorporating the pygfunction package and a regression-based heat pump model, to assess the thermal response factors (g-functions) of geothermal borehole fields and to perform the analysis. The results demonstrate that around 70 % of the considered heating and cooling demand can be covered in the WH scenario and additionally about 20 % in the WH+BTES scenario. Currently, the WH scenario is economically most promising, while the WH+BTES scenario allows for higher CO 2 savings. The sensitivity analysis further indicates that storing waste heat could become economical if the BTES capital cost were reduced by 35 % and the ratio of DH price to electricity price increased to 2.5 times the current value. For the WH scenario, the range of marginal waste heat prices was determined using Monte Carlo simulations. The average values obtained are 48, 56, 90, 93 €/MWh wh for the DH design supply temperatures of 120, 95, 70, 48 °C, respectively. Thus, low-temperature district heating operators can expect larger profits if waste heat prices are constant for all network temperatures.
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SunView 深度解读
该研究对阳光电源储能系统具有重要启示。数据中心余热回收结合浅层钻孔热储能(BTES)的场景,与我司PowerTitan储能系统和热管理技术高度契合。可将ST系列PCS的热管理优化与区域供热网络耦合,实现能源梯级利用。研究显示低温供热网络(48°C)边际余热价格达93欧元/MWh,验证了储能系统余热回收的经济价值。建议将iSolarCloud平台扩展至冷热电三联供场景,开发预测性热负荷管理算法,提升综合能效20%以上,助力数据中心零碳转型。