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Characteristics of deuterium excess parameters for geothermal water in Beijing

机译:北京市地热水中氘过量参数的特征

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This study investigates the characteristics of geothermal water in 10 geothermal fields in Beijing. The relationships between the deuterium excess parameter (d) and temperature, depth, age of geothermal groundwater, groundwater flow field, and Eh were investigated using geothermal groundwater samples. Results showed that (1) the average d value of geothermal water is 5.4, whereas that of the groundwater in normal temperature is 6.04. The differences are induced by the oxygen isotope exchange during the water-rock interaction, which may be more easily completed in geothermal water than in cold groundwater. (2) The d value increases remarkably with the age of the geothermal groundwater. The d value increases from 11.2 to 14.6 when the age of the geothermal water is 12,760 +/- 130 a and 38,960 +/- 630 a, respectively. Moreover, the isotope heat exchange for composition of the hydrogen and oxygen isotopes in the geothermal groundwater proceeds sufficiently with time. (3) The d value decreases from 5.72 to 3.03 when the depth increases from 125.13 to 3221 m. Generally, in the same area, the d value decreases with depth because the temperature is increasing. (4) The d value of the groundwater gradually reduces from the northern recharge area to the southern discharge area. The average d value is 7.31 in the northern recharge area and 5.68 in the middle Beijing Depression, whereas the d value in the southern area of Fengheying is -9.20. The larger difference in d values between the recharge and discharge areas is due to the slower velocity of underwater flow, which induces longer time for oxygen exchange. (5) The relationship between the d and Eh is complex. When Eh is <200 mV, the d value of the geothermal water decreases with the decrease in Eh. When Eh is higher than 200 mV, the d value increases slightly with the decrease in Eh. The study of the characteristics of deuterium excess parameters for geothermal water could provide a scientific isotopic evidence for assessment and exploitation measures in geothermal groundwater systems.
机译:本研究调查了北京10个地热田的地热水特征。利用地热地下水样品研究了氘过量参数(d)与温度,深度,地热地下水年龄,地下水流场和Eh之间的关系。结果表明:(1)地热水的平均d值为5.4,常温下的地下水的d值为6.04。这种差异是由水-岩相互作用过程中的氧同位素交换引起的,在地热水中比在冷的地下水中更容易完成这种同位素交换。 (2)d值随着地热地下水的年龄而显着增加。当地热水的年龄分别为12,760 +/- 130 a和38,960 +/- 630 a时,d值从11.2增加到14.6。此外,地热地下水中氢和氧同位素组成的同位素热交换会随时间进行。 (3)当深度从125.13增加到3221 m时,d值从5.72减小到3.03。通常,在同一区域中,由于温度升高,d值随深度减小。 (4)地下水的d值从北部补给区到南部排出区逐渐减小。北部补给区的平均d值为7.31,北京中部De陷的平均d值为5.68,而丰和营南部的d值为-9.20。补给区和排出区之间d值的较大差异是由于水下流动的速度较慢,这导致了更长的氧气交换时间。 (5)d和Eh之间的关系很复杂。当Eh <200 mV时,地热水的d值随Eh的减小而减小。当Eh高于200 mV时,d值随Eh的降低而略有增加。对地热水中氘过量参数特征的研究可以为地热水系统评估和开发措施提供科学的同位素依据。

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