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首頁» 過刊瀏覽» 2023» Vol.8» Issue(3) 259-289???? DOI : 10.3969/j.issn.2096-1693.2023.03.020
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華夏地塊花崗巖生熱率特征及其對地溫場的影響
李科甫, 朱傳慶
1 中國石油大學(xué)( 北京) 油氣資源與探測國家重點實驗室,,北京 102249 2 中國石油大學(xué)( 北京) 地球科學(xué)學(xué)院,,北京 102249
Heat generation rate of granite in the Cathaysia block and its influence on geothermal fields, Southeast China
LI Kefu, ZHU Chuanqing
1 College of Geosciences, China University of Petroleum-Beijing, Beijing 102249, China 2 State Key Laboratory of Petroleum Resources and Prospecting, China University of Petroleum-Beijing, Beijing 102249, China

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摘要? 基于華南地區(qū)1933 個花崗巖樣品的地球化學(xué)數(shù)據(jù)對不同成因花崗巖 生熱率進(jìn)行研究分析,總結(jié)了研究區(qū)花崗巖放射性生熱特征及其與 大地?zé)崃髦g的關(guān)系,,對認(rèn)識研究區(qū)地溫場主控因素及地?zé)豳Y源分 布的宏觀背景具有參考價值,。
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關(guān)鍵詞 : 花崗巖,生熱率,放射性生熱元素,產(chǎn)熱量,大地?zé)崃?
Abstract

The South China Cathaysia block is located in the southeast margin of the Eurasian plate, and is an important mineral and geothermal resource area in China. After several tectonic events, granites of different tectonic stages are widely distributed in the area. Granitoids play a special role in the dynamics and evolution of the Earth and its thermal state, and the heat generated by their radioactive decay is one of the main heat sources on Earth. The high radioactive heat-producing hot dry rock resources are mainly distributed in South China, and the decay heat of radioactive elements is the main heat source, and the lithology is mainly granite. Based on the statistics of granite data in South China, this paper analyzes the heat generation rate of different granite types in different areas of South China, and summarizes the radioactive heat generation characteristics of granite in the study area and the relationship between them and terrestrial heat flow, which has reference value for understanding the main controlling factors of the geothermal field and the macro background of geothermal resource distribution in the study area. Based on the geochemical analysis of 1933 granite samples in South China, the following results are obtained: 1) The heat generation rate of granite ranges from 0.40 to 17.45 μW/m3, with an average heat generation rate of 4.56±2.66 μW/m3, and there is a good correspondence between them according to the distribution of ground heat flow and heat generation rate; 2) The contribution rates of radiothermic elements U, Th and K were 49.45%, 40.16% and 10.39%, respectively. At the same time, the concentrations of U, Th and Th/U varied greatly, and there was no obvious correlation with age; 3) There are differences in the heat generation rate of the three types of granite(Type I、A and S). The average heat generation rate of type I granite (3.86±2.43 μW/m3 ) is significantly lower than the average heat generation rate of type A and type S granite, which are 5.55±2.91 μW/m3 and 5.0±2.58 μW/m3, respectively; 4) A Monte Carlo method is used to calculate that the average heat yield of the Yanshanian granite in South China is 99.01×105 GJ/a(1 GJ/a=109 J/a), which is converted into standard coal 3.38×105 t/a, and that of Indosinian granite is 63.13×105 GJ/a, which is converted into standard coal 2.15×105 t/a; 5) The calculation of two crustal models shows that granite plays an important role in the contribution of earth heat flow in South China. In the area covered by sedimentary strata, the contribution of Earth’s radioactive heat generation to surface heat flow is 29.13 mW/m2, accounting for 41.61% of the total heat flow value. In the area of intrusive rock exposure, the contribution of crustal radioactive heat generation to surface heat flow is 43.85 mW/m2, accounting for 51.76% of the total heat flow value.


Key words: granite; heat generation rate; radioactive heat-generating elements; heat production; heat flow
收稿日期: 2023-06-29 ????
PACS: ? ?
基金資助:國家重點研發(fā)計劃課題 (2021YFA0716003) 資助
通訊作者: [email protected]
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李科甫, 朱傳慶. 華夏地塊花崗巖生熱率特征及其對地溫場的影響. 石油科學(xué)通報, 2023, 03: 259-289 LI Kefu, ZHU Chuanqing. Heat generation rate of granite in the Cathaysia block and its influence on geothermal fields, Southeast China. Petroleum Science Bulletin, 2023, 03: 259-289.
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