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1.
以苏州城区为研究背景,阐述了浅层地温能资源赋存的水文地质条件,分析了地下水源热泵系统应用可能对地下水环境产生的影响,研究得出第Ⅱ承压含水层是该地区地下水源热泵开发利用的理想含水层.在此基础上,采用层次分析法和综合指数法建立适宜性分区标准,将苏州城区地下水源热泵系统应用划分为适宜区、一般适宜区和不适宜区,并进行了分区评价.为苏州城区地下水源热泵系统的合理开发利用和制定地下水环境保护措施等提供了重要依据.  相似文献   

2.
The impact of groundwater withdrawals on the interaction between multi-layered aquifers with different water qualities in the Viterbo geothermal area (central Italy) was studied. In this area, deep thermal waters are used to supply thermal spas and public pools. A shallow overlying aquifer carries cold and fresh water, used for irrigation and the local drinking-water supply. Starting with a conceptual hydrogeological model, two simplified numerical models were implemented: a steady-state flow model of the entire groundwater system, and a steady-state flow and heat transport model of a representative area, which included complex interactions between the aquifers. The impact of increased withdrawals associated with potential future development of the thermal aquifer must be considered in terms of the water temperature of the existing thermal sources. However, withdrawals from the shallow aquifer might also influence the discharge of thermal sources and quality of the water withdrawn from the shallow wells. The exploitation of the two aquifers is dependent on the hydraulic conductivity and thickness of the intervening aquitard, which maintains the delicate hydrogeological equilibrium. Effective methods to control this equilibrium include monitoring the vertical gradient between the two aquifers and the residual discharge of natural thermal springs.  相似文献   

3.

Urban areas are major contributors to the alteration of the local atmospheric and groundwater environment. The impact of such changes on the groundwater thermal regime is documented worldwide by elevated groundwater temperature in city centers with respect to the surrounding rural areas. This study investigates the subsurface urban heat island (SUHI) in the aquifers beneath the Milan city area in northern Italy, and assesses the natural and anthropogenic controls on groundwater temperatures within the urban area by analyzing groundwater head and temperature records acquired in the 2016–2020 period. This analysis demonstrates the occurrence of a SUHI with up to 3 °C intensity and reveals a correlation between the density of building/subsurface infrastructures and the mean annual groundwater temperature. Vertical heat fluxes to the aquifer are strongly related to the depth of the groundwater and the density of surface structures and infrastructures. The heat accumulation in the subsurface is reflected by a constant groundwater warming trend between +0.1 and?+?0.4 °C/year that leads to a gain of 25 MJ/m2 of thermal energy per year in the shallow aquifer inside the SUHI area. Future monitoring of groundwater temperatures, combined with numerical modeling of coupled groundwater flow and heat transport, will be essential to reveal what this trend is controlled by and to make predictions on the lateral and vertical extent of the groundwater SUHI in the study area.

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4.
This study investigated the thermal regime of shallow groundwater in the Turin area (NW Italy), where the large energy demand has motivated a new interest for renewable sources, such as the use of ground-source heat pumps for domestic heating and cooling. The vertical variability of the groundwater temperature between the ground surface and 10–20 m was detected: deeper temperatures were higher than shallow temperatures in spring, while a decrease with depth occurred in autumn. These variations are connected with the heating and cooling cycles of the ground surface due to the seasonal temperature oscillation. Variations below the seasonal oscillation are likely to be connected with the presence of advective heat transport due to the groundwater flow, according to the hydraulic features of a shallow aquifer. Temperature values mostly ranged between 12 and 14 °C in rural areas, while the values were between 14 and 16 °C below the Turin city. This groundwater warming is attributed to a widespread urban heat island phenomenon linked to warmer land surface temperatures in Turin city. Sparse warm outliers are connected with point heat sources and site-specific conditions of land and subsurface use, which may cause the aquifer temperature to rise. A relatively stable temperature below the seasonal fluctuation zone combined with high productivity and legislated limits for deeper groundwater use represent favourable conditions for a large-scale diffusion of groundwater heat pumps within the shallow aquifer. Moreover, this heat surplus should be regarded as a resource for future geothermal installations.  相似文献   

5.
关中盆地主要城市浅层地热能资源量赋存规律研究   总被引:11,自引:10,他引:1       下载免费PDF全文
具有无污染、可再生、分布广、能量大以及可就近利用等诸多优势的浅层地温能是一种建筑节能的洁净能源,具有广泛的应用前景。根据关中盆地主要城市工程地质、水文地质、环境地质条件等因素,分别建立了每个城市地下水热泵和地埋管热泵系统的适宜分区评价体系,并进行了适宜性综合分区。基于适宜性分区评价结果,对主要城市进行了浅层地热能资源量评价,包括热容量计算、换热功率计算和热能潜力计算,旨在有效地丰富浅层地温能勘察评价与开发利用的理论、奠定浅层地温能广泛开发利用的基础,为改善我国现有能源结构、构建环境友好型社会和节能减排的目标服务。  相似文献   

6.
In this paper,through data collection and field investigation,the development and utilization status of shallow geothermal energy in Zhoukou urban area was discussed.Based on the analysis of hydrogeological conditions,rock and soil structure characteristics and field test research,the spatial distribution characteristics of rock and soil in the study area were summarized.The study shows that Zhoukou City is located in the alluvial plain of Huanghuai,and the loose deposits of river alluvial genesis range 0-200 m.These loose deposits and groundwater stored in their pores are the main carriers of shallow geothermal energy.In the central part of the Yinghe River in the middle of the study area,the aquifer thickness is within 200 m,the particle size is coarser,the water-bearing degree and recharge capacity is better.On this basis,the paper uses AHP to evaluate the suitability of shallow geothermal energy development and utilization to guide the rational development and utilization of shallow geothermal energy resources.  相似文献   

7.
In this paper, through data collection and field investigation, the development and utilization status of shallow geothermal energy in Zhoukou urban area was discussed. Based on the analysis of hydrogeological conditions, rock and soil structure characteristics and field test research, the spatial distribution characteristics of rock and soil in the study area were summarized. The study shows that Zhoukou City is located in the alluvial plain of Huanghuai, and the loose deposits of river alluvial genesis range 0-200 m. These loose deposits and groundwater stored in their pores are the main carriers of shallow geothermal energy. In the central part of the Yinghe River in the middle of the study area, the aquifer thickness is within 200 m, the particle size is coarser, the water-bearing degree and recharge capacity is better. On this basis, the paper uses AHP to evaluate the suitability of shallow geothermal energy development and utilization to guide the rational development and utilization of shallow geothermal energy resources.  相似文献   

8.
通过对昆明地热田深层基岩地下热水系统的地质、水文地质条件和开采现状的分析,建立了考虑温压变化和越流条件的岩溶热储层中地下热水的水流和溶质(污染物)运移的准三维非稳定流数学模型。对开采条件下地热田Ⅱ 块段地下热水系统中水位及F- 、Cl- 、NH+4 、SO2-4 浓度的模拟结果表明,所建立的模型合理、可靠,具有较高的仿真性。模型可预测不同条件下地热田地下热水的流场和溶质浓度的动态变化趋势,为防治地下热水环境的进一步恶化提供参考。   相似文献   

9.
Large thermal extractions and extensive implementation of groundwater heat pumps (GWHP) necessitate a validation of the sustainability of their use and possible detrimental effects on groundwater. The goal of this work is to develop a regional heat transport model (of ~13 km × 5 km) for real site conditions. This model should consider all relevant transport processes, despite the large area under investigation. The model is based on a two-dimensional, transient-calibrated groundwater flow model for the “Leibnitzer Feld” (Styria, Austria). The two-dimensional horizontal model is linked via the FEFLOW interface manager with a newly developed “Multi-Layer-Model”-tool, which reproduces thermal aquifer–atmosphere interaction. Based on the regional heat transport model, scenarios are delineated for heating and cooling purposes for large GWHPs, which are appropriate for a small manufacturing business, an administrative building and 10 family homes. First of all, these have large spacing and thereafter, effects of area-covering usage of geothermal systems are evaluated for five administrative buildings located in close proximity to one another (200–350 m) and also for a large number of smaller heat extractions (each representing a one family house system). Modeled spatial and temporal temperature effects on the shallow aquifer are discussed. It was possible to present a simulation of realistic heating and cooling scenarios. This simulation may be introduced into practice once some further simplifications to the system are made. Locally limited heat plumes (max. length: 625 m) were observed for the manufacturing business. Any thermal effects coming from the geothermal systems were shown to be temporally stable. As such, no distinct trend of reduced annual temperatures could be observed.  相似文献   

10.
关中盆地地温场划分及其地质影响因素   总被引:2,自引:1,他引:1       下载免费PDF全文
周阳  穆根胥  张卉  王克  刘建强  张亚鸽 《中国地质》2017,44(5):1017-1026
具有无污染、可再生、分布广、储量大以及可就近利用等诸多优势的地热能是一种洁净能源,应用前景广阔。地热能的开发利用与区域地温场划分紧密相关,关于关中盆地整体地温场划分的研究鲜有报道。根据关中盆地的工程地质、水文地质、环境地质条件等因素,总结了岩体类和砂土类的热物性质特征。通过灰色关联分析方法,分析了岩土体热物性参数的影响因素,认为干燥重度对导热系数的影响程度最大,含水率、天然重度、孔隙率三者影响程度相近;干燥重度对比热容影响程度最大,天然重度次之,含水率和孔隙率影响最弱。利用盆地内多个地温常观孔,绘制了地温变化曲线和地温梯度等值线,认为关中盆地常温带位于15~20 m埋深处,地温梯度总体呈中部高、东西低,固市凹陷、西安凹陷、蒲城凸起、断裂及断裂汇合区域地温梯度较大,宝鸡凸起、咸礼凸起以及临蓝凸起地温梯度较小,产生差异的原因包括地质构造、地下水活动、岩土体热物性参数等三方面。利用热物性参数和地温梯度值,计算了盆地内浅层和深层的大地热流值,并分析了两者差异的成因,经对比全国区域地热资料,认为关中盆地是一个复杂的坳陷型中低温地热田,地热资源潜力巨大,居全国上游。该文旨在系统地分析关中盆地地温场特征,为地热能的勘查评价提供基础数据支持,促进关中盆地地热开发利用,为构建环境友好型社会服务。  相似文献   

11.
地温场是采矿活动的重要地质条件之一。基于332井次钻孔测温数据、地层岩性及其组合特征、构造地质及水文地质条件等,探讨了寺家庄井田地温负异常及其主控因素。结果表明:寺家庄井田现代地温场受地层及热导率、地下水和开放型构造等三大地质因素控制。地层砂岩所占比例较高,其导热性强、热传导快,不易造成局部聚热,是井田地温值整体偏低的主要控制因素,区域地下水的强径流状态是现代地温整体偏低的宏观控制因素;地下水径流状态对围岩温度起到"制冷"和诱发构造通道散失双重控制作用,是研究区地温负异常和地温场分异的重要控制因素,开放型张性较大正断层、陷落柱不但为地温的散失提供了有利通道,亦为邻近含水层间地下水循环、径流对围岩温度的"制冷"提供了有利条件,是井田地温负异常和地温场分异的关键控制因素。   相似文献   

12.
昆明市地热田越流含水系统中地下热水的数值模拟   总被引:7,自引:0,他引:7  
深层基岩地下(热)水水化学污染问题日趋严重,急需定量而仿真地模拟和预报天然状态和各种人为工程经济活动下地下(热)水流动及溶质(或污染物)的运移。在充分认识地质、水文地质条件的基础上,建立了考虑温压变化和越流条件的昆明市地热田深层基岩地下热水系统中水流和溶质运移的准三维非稳定流数学模型。模型用于开采条件下地热田地下热水水位及 F、Cl浓度的模拟,模拟结果具有较高的仿真性,拟合误差一般小于 2%~5%,表明模型合理、可靠。应用所建模型预测了开采条件下昆明市地热田II块段地下热水流场和溶质浓度动态的变化趋势,并提出了控制地下热水环境进一步恶化的措施。  相似文献   

13.
鲁北地区于2001年已陆续开始应用热泵技术开发浅层地热能,但区内的浅层地热能资源评价工作却严重滞后,制约了区内浅层地热能资源的开发和合理利用。为促进鲁北地区浅层地热能的开发利用,省政府拿出专项资金,开展了鲁北地区浅层地热能的资源评价工作,前期在调查区域内开发利用现状和摸清地质条件的基础上,采用层次分析法,分别对地下水换热方式和地埋管换热方式进行了开发利用适宜性分区,采用热储体积法对该区的浅层地热容量进行了计算,得出鲁北地区浅层地热容量为29.386×10^15 kJ/℃;并根据适宜性分区结果,分别对地下水式和地埋管式地源热泵适宜区、较适宜区可利用换热量也进行了计算,得出地下水式地源热泵200 m以浅可利用换热量为0.8489×10^10kW·h,地埋管式地源热泵200m以浅可利用换热量为6.5261×10^12kW·h。  相似文献   

14.
以丘陵地区某医院水源热泵系统为例,在建立耦合数学模型的基础上,利用TOUGH2软件,讨论含水层孔隙度以及渗透系数对潜水水热运移的影响,定量评价对热泵采能区域的温度场演化影响。在该研究区特定地质及水文地质条件下,含水层有效孔隙度和渗透系数等水文地质参数对热泵采能区域的温度场演化影响较明显。从而为研究类似地区的地下水环境变化有一定的借鉴意义。  相似文献   

15.
Shallow geothermal prospecting ( < 700 m) has been performed in four zones in Morocco for which few deep data are available: northwestern basin, northeastern basin, Tadla Basin and Agadir Basin. These areas are different geologically and hydrogeologically. The temperature data from 250 wells at depths between 15 and 500 m have been analysed in order to estimate the natural geothermal gradient in these areas, to determine the principal thermal anomalies, to identify the main thermal indices and to characterise the recharge, discharge and potential mixing limits of the aquifers.The hydrostratigraphical study of each basin revealed several potential reservoir layers in which the Turonian carbonate aquifer (Tadal and Agadir Basins) and Liassic acquifer (Moroccan northwestern and northeastern basins) are the most important hot water reservoirs in Morocco. The recharge zones of each aquifer are characterised by high topography, high water potential, shallow cold water, low geothermal gradient and negative anomalies. The discharge zones are characterized by low topography, low piezometric level, high geothermal gradient, high temperature with hot springs and positive anomalies. The main thermal indices and the principal thermal anomalies that coincide with the artesian zones of the Turonian and Liassic aquifers have been identified.  相似文献   

16.
在冲积层厚度较薄、地下水埋藏较浅的山区河谷地带,边界条件对地下水可开采量和可利用能量(温度)影响较为明显。为此,以一医院水源热泵系统为例,在建立耦合数学模型的基础上,利用TOUGH2软件,模拟评价河流边界对潜水水热运移的影响过程与程度,定量研究河流边界附近潜水水量与能量的动态变化规律。为研究该条件下地下水环境变化有一定的现实意义。  相似文献   

17.
浅层地热能勘查评价   总被引:6,自引:2,他引:6       下载免费PDF全文
利用热泵技术开发利用浅层地热能正在快速发展,为了保证浅层地热能的合理开发和可持续发展,必须进行勘查评价。区域浅层地热能调查查明区域浅层地热能资源数量、质量以及分布规律,进行开发利用区划,为浅层地热能可持续利用提供依据。地源热泵工程浅层地热能勘查为地下换热系统提供可靠的利用浅层地热能的依据。浅层地热能利用环境评价和经济评价是勘查中的必要内容。浅层地热能资源计算评价方法是本文首次系统提出的。  相似文献   

18.
北京北部地区深层热水开发对浅层冷水的影响   总被引:1,自引:1,他引:0  
北京北部有小汤山和沙河2个地热田,呈三角形展布,东部边界为黄庄-高丽营断裂,西部边界为南口-孙河断裂.北部边界为阿苏卫-小汤山断裂。热储层为蓟县系雾迷山组、铁岭组和寒武系-奥陶系碳酸盐岩岩溶裂隙含水层.热储盖层为青白口系页岩、石炭系-二叠系砂页岩和侏罗系火山岩隔水层。该区雨水、浅层基岩冷水和深层基岩热水的H、O同位素组成基本上都落在克雷格降水线上,表明区内冷水与热水均来源于大气降水。热水的^3H值表现出北高南低的特点.说明热水与冷水一样自北向南流动。重点分析了深层热水开采对浅层地震观测井中冷水动态的影响,以及这种影响在不同的水文地质条件、离开采井不同距离和不同测项方面表现出的差异。结果表明,北京北部深层热水开采对浅层冷水动态的影响距离约为5km.对位于导水断裂带附近的观测井的影响最为明显。  相似文献   

19.
高山 《吉林地质》2014,(1):105-107
地下水源热泵浅层地热能是指地下水在抽水-回灌过程中,利用水源热泵提取水中的热能,或用于空调制冷产生的能量转换。地下水源热泵地热能是浅层地热能的一种主要类型。地下水源热泵浅层地热能是一种可循环利用、环保的新型能源,逐渐为人们认识,具有广泛的开发前景。本文简要介绍吉林市城区地下水源热泵浅层地热能条件,开发利用前景分析。  相似文献   

20.
近年来水热型、浅层地热能发展产生的缺点问题日益突出,以取热不取水为原则,中深层U型水平对接换热技术成为新的技术方向。通过对鄂尔多斯盆地南缘延安地区地层岩性、地温梯度特征、热储层特征等特征研究,分析了研究区中深层地热资源潜力,研究结果表明鄂尔多斯盆地南缘奥陶系马家沟组为良好的热传导型热储,深部地温梯度为3.05℃/100m。当马家沟组深度在3157m时,对应温度达到110.67℃。测井及注水试验结果表明,奥陶系马家沟组为极弱含水层,几乎没有流体,属于良好的干热岩型地热资源,具有较高的开采价值。充分确定了该区地热地质条件良好、地热资源潜力巨大。为合理、高效开发利用该区地热资源提供了科学依据,对进一步开发利用该区的地热能具有重要意义。  相似文献   

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