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Potential maps for the hydrogeologic prerequisites of the installation of deep geothermal doublets and groundwater source heat pump systems in Budapest, Hungary

机译:匈牙利布达佩斯安装深层地热双重峰和地下水源热泵系统的水文地质前提条件的潜力图

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摘要

Budapest is famous for its thermal springs and spas and outstanding thermal water resources. In the 21 century renewable energy utilization — including the use of geothermal energy — became the focus of interest. Improving the use of the different forms of geothermal energy requires the assessment of their possibilities. The potential for deep geothermal doublet systems for direct heating in Budapest was evaluated based on the temperature conditions, the depth and reconnaissance of the carbonate reservoir. NW Buda is not appropriate for thermal water exploration. SW and SE Budapest have better temperature conditions but the lithology of the reservoir is uncertain. Beneath Pest the thermal water is well exploitable. It is obvious from the map of the region that the area is promising; however, due to the hydraulic continuity of the system, reinjection is desirable. Considering the reliability of the employed data the geothermal potential map is suitable only for general orientation and guidance.udThe geothermal potential map for Groundwater-sourced Heat Pump Systems (GHPS; scale = 1:40,000) was assembled by evaluating the thickness and appearance of the gravel strata and water table, complemented by the sulfate content as an aggressive component of groundwater. The original geothermal potential map series can be used for the evaluation of potential sites in Budapest. It can be concluded that the Buda side of the Danube River is almost entirely unsuitable for shallow groundwater-based heat pump installations. The only areas under consideration are Óbuda and the riverbanks. On the Pest side, there is no gravel in the central part; the largest areas close to the river and in the immediate surroundings are uncertain, with patches of suitable and possible categories. The southern and eastern area of Pest is the most prospective for GHPS installation. The potential maps only consider natural parameters; however, installation may be strongly influenced by the urbanization and the city environment.ud
机译:布达佩斯以温泉和水疗中心以及丰富的温泉资源而闻名。在21世纪,可再生能源的利用(包括地热能的利用)成为人们关注的焦点。改善对各种形式的地热能的利用需要评估其可能性。根据温度条件,碳酸盐岩储层的深度和勘测,评估了布达佩斯直接加热的深层地热双重峰系统的潜力。 NW Buda不适合用于热水勘探。布达佩斯西南和布达佩斯的温度条件较好,但储层的岩性尚不确定。在害虫下,热水可被充分利用。从该地区的地图可以明显看出该地区很有希望;但是,由于系统的液压连续性,需要重新注入。考虑到所用数据的可靠性,地热势图仅适用于一般方向和指导。 ud通过评估地下水的热泵系统的厚度和外观组装了地下水源热泵系统的地热势图(GHPS;比例= 1:40,000)。砾石地层和地下水位,辅以硫酸盐含量作为地下水的侵蚀性成分。原始的地热潜力图系列可用于评估布达佩斯的潜在地点。可以得出结论,多瑙河的布达一侧几乎完全不适合用于浅层地下水基热泵设施。唯一考虑的地区是Óbuda和河岸。在害虫一侧,中部没有砾石。靠近河流和附近地区的最大区域不确定,有适当且可能的类别的补丁。害虫的南部和东部地区最有可能安装GHPS。势能图仅考虑自然参数。但是,安装可能会受到城市化和城市环境的强烈影响。 ud

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