Solar fractions of SHIP plants considering the availability of roof area based on OpenStreetMap data

Felix Pag, Mateo Jesper, Oleg Kusyy, Klaus Vajen, Ulrike Jordan
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引用次数: 1

Abstract

Solar heat for industrial processes (SHIP) can be a key technology to decarbonize the industrial heat demand world-wide. Several national studies use either a bottom-up or a top-down-approach to assess the potential of solar process heat using estimated fixed solar fractions. Due to limited area available for the installation of solar collectors and the seasonality of the load profile, this solar fraction cannot be achieved in all cases. To address this limitation, another estimated factor is used in those studies. However, the impact of the lack of free area on solar fractions and overall solar potential has not been studied in detail so far. Thus, a dataset with load profiles and roof areas from OpenStreetMap GIS data from 489 German companies from secondary and tertiary sector is set up in this study. Based on the standardized pre-design methodology of the VDI 3988 guideline, the evaluations show that one third of the regarded companies lack sufficient roof area whereas two thirds can provide their summer heat demand with solar collectors. Furthermore, the study shows that an ambient temperature dependent heat demand limits the solar potential in terms of solar fraction even more than the available roof area.

Abstract Image

考虑到基于OpenStreetMap数据的屋顶面积的可用性,SHIP工厂的太阳能部分
太阳能工业热是实现世界范围内工业热需求脱碳的一项关键技术。一些国家的研究采用自下而上或自上而下的方法,利用估计的固定太阳能组分来评估太阳能过程热的潜力。由于可用于安装太阳能集热器的面积有限和负荷剖面的季节性,这一太阳能部分不能在所有情况下都实现。为了解决这一限制,在这些研究中使用了另一个估计因素。然而,缺乏自由面积对太阳能组分和总太阳能潜力的影响迄今尚未得到详细的研究。因此,本研究建立了来自489家德国第二和第三产业公司的OpenStreetMap GIS数据的负载概况和屋顶面积数据集。根据VDI 3988准则的标准化预设计方法,评估显示,三分之一的公司缺乏足够的屋顶面积,而三分之二的公司可以通过太阳能集热器提供夏季热量需求。此外,研究表明,环境温度依赖的热需求限制了太阳能的潜力,甚至超过了可用的屋顶面积。
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