Hałaj Elżbieta, Pająk Leszek, Papiernik Bartosz
AGH University of Science and Technology, Mickiewicza 30 Ave, 30-059, Krakow, Poland.
Environ Geochem Health. 2022 Jul;44(7):2253-2279. doi: 10.1007/s10653-021-01130-7. Epub 2021 Oct 28.
The aquifer thermal energy storage (ATES) has gained attention in several countries as an installation for increasing the energy efficiency of geothermal systems and the use of waste heat. The Lower Cretaceous reservoir is known as one of the most prospective for geothermal purposes in Poland. However, in the southern part of the Mogilno-Łódź Trough (Central Poland) is considered to have a lower geothermal potential. The aim of this paper is to study whether the Lower Cretaceous reservoir in this area is suitable for aquifer thermal energy storage. Prior to dynamic simulations in Feflow© software, a regional Petrel© static parametric model which includes a multidisciplinary approach was prepared. A methodology of fitting Petrel's structural and parametrical model to Feflow requirements is provided within this paper. The performance simulation of 4 systems has been conducted for 30 years. Increasing precipitation potential is expected for aragonite and calcite along with a temperature increase, while silica precipitation carries a much smaller risk. The paper presents potential for ATES systems in the Lower Cretaceous reservoir of the study area with the best doublet location having thermal recovery ratio of 0.47 and 0.34 for 30 and 40 K temperature differential scenario. An imbalance in heat injection/production in the storage system can cause the reservoir to cool faster than in conventional geothermal heating installation. ATES can provide a successful geothermal reservoir boosting in the case of applying a balanced injection of waste heat.
含水层储能(ATES)作为一种提高地热系统能源效率和利用废热的设施,在多个国家受到关注。下白垩统储层被认为是波兰地热利用最具前景的储层之一。然而,在莫吉廖诺 - 罗兹槽谷(波兰中部)的南部,其地热潜力被认为较低。本文的目的是研究该地区的下白垩统储层是否适合含水层储能。在使用Feflow©软件进行动态模拟之前,准备了一个包含多学科方法的区域Petrel©静态参数模型。本文提供了一种使Petrel结构和参数模型符合Feflow要求的方法。对4个系统进行了30年的性能模拟。随着温度升高,文石和方解石的沉淀潜力预计会增加,而二氧化硅沉淀的风险要小得多。本文展示了研究区域下白垩统储层中ATES系统的潜力,在30K和40K温差情况下,最佳双井位置的热回收率分别为0.47和0.34。储能系统中热注入/产出的不平衡会导致储层比传统地热供暖装置冷却得更快。在应用平衡的废热注入的情况下,ATES可以成功地提升地热储层。