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Volume 43 Issue 11
Nov.  2025
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Article Contents
ZHANG Zhibo, HONG Mingxiang, ZHANG Zhilu, DU Lijie, QIN Shuwei, ZHAO Yan. Dynamic data analysis of groundwater level and temperature monitoring in five districts in Shenyang in 2023[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(11): 58-66. doi: 10.13205/j.hjgc.202511007
Citation: ZHANG Zhibo, HONG Mingxiang, ZHANG Zhilu, DU Lijie, QIN Shuwei, ZHAO Yan. Dynamic data analysis of groundwater level and temperature monitoring in five districts in Shenyang in 2023[J]. ENVIRONMENTAL ENGINEERING , 2025, 43(11): 58-66. doi: 10.13205/j.hjgc.202511007

Dynamic data analysis of groundwater level and temperature monitoring in five districts in Shenyang in 2023

doi: 10.13205/j.hjgc.202511007
  • Received Date: 2024-08-15
  • Accepted Date: 2024-09-30
  • Rev Recd Date: 2024-09-10
  • Available Online: 2026-01-09
  • The paper aims to explore the characteristics and patterns of dynamic changes in urban groundwater by organizing and analyzing the monitoring data on water level and water temperature in urban groundwater in Shenyang. Understanding these changes is crucial for protecting the urban groundwater environment and ensuring the safety of the urban water supply. The research methodology includes using groundwater monitoring data from five districts within Shenyang from Nov. 2022 to Oct. 2023, analyzing in detail the characteristics of the dynamic changes of groundwater, and comprehensively evaluating the changing characteristics in groundwater level, groundwater flow field, and groundwater temperature from multiple perspectives, including meteorology, hydrology, and anthropogenic activities. The basic law of the dynamic change of groundwater level and water temperature in Shenyang urban area in one year was obtained. The results showed that the groundwater dynamics in Shenyang were significantly influenced by seasonal precipitation, river level changes, and human activities (e.g., mining, heat pump system use, etc.). These findings not only reveal the dynamic change law of groundwater in Shenyang in the monitoring period, but also provide a valuable scientific basis for future water resources management.
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