Curie Point Depth Estimations for Northwest Iran Through Spectral Analysis of Aeromagnetic Data for Geothermal Resources Exploration

被引:0
作者
Sina Shirani
Ali Nejati Kalateh
Younes Noorollahi
机构
[1] Shahrood University of Technology,Faculty of Mining, Petroleum and Geophysics Engineering
[2] University of Tehran,Faculty of New Sciences and Technologies
[3] University of Tehran,Energy Modelling and Sustainable Energy Systems Research Lab. (METSAP), Faculty of New Sciences and Technologies
来源
Natural Resources Research | 2020年 / 29卷
关键词
Northwest Iran; Curie point depth estimation; Aeromagnetic data; Geothermal resources;
D O I
暂无
中图分类号
学科分类号
摘要
The northwest of Iran is considered as a promising geothermal zone owing to its geographical properties, tectonic features, and thermal activities, particularly in Sabalan geothermal field. Several large stratovolcanoes such as Sahand and Sabalan mountains in northwestern Iran, each of which has a vast central dome probably located on a tectonic plate, comprising of intrusive and effusive volcanic rocks. This study mainly aimed at performing the spectral analysis of aeromagnetic data to estimate Curie point depth (CPD), geothermal gradient and heat flow in the northwest of Iran using random magnetization (centroid method and forward modeling of the spectral peak method) and fractal magnetization (de-fractal method). The reduced-to-pole aeromagnetic data were divided into 55 overlapping blocks of 80 × 80 km. The derived range of CPD in the study area using the centroid method, forward modeling spectral peak method and de-fractal method were 9.2–13.9 km, 8.9–13.7 km and 7.2–12.9 km, respectively The derived values of heat flows in the study area using the above-mentioned methods were higher than 104 mW/m2, 105 mW/m2 and 120 mW/m2, respectively. The results of this study were found to have good correlations with wells data and resistivity measurements collected in the Northwest Sabalan geothermal field. Good consistency was also found between the CDPs and earthquake distribution. Moreover, the locations of hot springs and the maximum temperatures of the wells were associated with the variations in the modelled depth of the geothermal resources. Promising regions were in the northeast and southwest parts of the study area.
引用
收藏
页码:2307 / 2332
页数:25
相关论文
共 180 条
[11]  
Aydın I(2018)Geothermal characterization of the St. Lawrence Lowlands sedimentary basin, Québec, Canada Natural Resources Research 27 479-57
[12]  
Oksum E(1977)Spectral analysis of gravity and magnetic anomalies due to rectangular prismatic bodies Geophysics 42 41-11832
[13]  
Azad SS(2016)Curie point depth, heat-flow and radiogenic heat production deduced from the spectral analysis of the aeromagnetic data for geothermal investigation on the Menderes Massif and the Aegean Region, western Turkey Geothermics 60 44-25
[14]  
Dominguez S(1988)Curie temperature isotherm analysis and tectonic implications of aeromagnetic data from Nevada Journal of Geophysical Research: Solid Earth 93 11817-390
[15]  
Philip H(2009)Mapping Curie temperature depth in the western United States with a fractal model for crustal magnetization Journal of Geophysical Research: Solid Earth 114 1-1150
[16]  
Hessami K(1983)Analysis of aeromagnetic measurements from the Cascade Range in central Oregon Geophysics 48 376-24
[17]  
Forutan MR(1997)Inherent power-law behavior of magnetic field power spectra from a spector and grant ensemble Geophysics 62 1143-33
[18]  
Zadeh MS(2013)3-D inversion of MT data from the Sabalan geothermal field, Ardabil, Iran Journal of Applied Geophysics 93 12-101
[19]  
Ritz JF(2014)Curie point depth from spectral analysis of magnetic data in Taiwan Journal of Asian Earth Sciences 90 26-64
[20]  
Bansal AR(2016)Estimation of Curie point depths and heat flow from Ardebil province, Iran, using aeromagnetic data Arabian Journal of Geosciences 9 383-358