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亭子口水库坝前水温分层结构及坝下水温节律研究

张旭 脱友才 王刚 王耀雄 贾云霄 黄滨

人民长江2025,Vol.56Issue(3):63-72,94,11.
人民长江2025,Vol.56Issue(3):63-72,94,11.DOI:10.16232/j.cnki.1001-4179.2025.03.009

亭子口水库坝前水温分层结构及坝下水温节律研究

Study on stratification structure of water temperature in front of Tingzikou Reservoir dam and rhythm of downstream river water temperature

张旭 1脱友才 1王刚 2王耀雄 2贾云霄 1黄滨3

作者信息

  • 1. 四川大学 山区河流保护与治理全国重点实验室,四川 成都 610065
  • 2. 嘉陵江亭子口水利水电开发有限公司,四川 广元 628000
  • 3. 水电水利规划设计总院,北京 100120
  • 折叠

摘要

Abstract

In order to explore stratification structures of water temperature in front of large reservoir dams and evolution laws of discharged water temperature in downstream river channels,and provide support and basis for reservoir management and optimal operation,taking Tingzikou Reservoir as the research object,high-frequency prototype observation of water temperature in front of reservoir dam and discharge water temperature was carried out from 2021 to 2023.The results showed that:①Tingzikou Reservoir was a seasonally stratified reservoir,the stratification phenomenon was the most obvious in summer and the weakest in winter,and double thermocline was observed from July to September.The dramatic increase in inflow in the fall of 2021 enhanced vertical mixing of the water column and significantly disrupted the thermal stratification structure of the water layer.②The diurnal ampli-tude of surface water temperature was mainly influenced by air temperature,while the diurnal amplitude of water temperature in the deeper water layer was mainly influenced by thermocline internal waves.The location of the maximum daily variability was shifted to deeper water due to thermocline internal waves caused by daily regulation of outflow.③ The depth of the thermocline varied seasonally,and the trend of the thermocline thickness changes was opposite to depth of thermocline.Surface water tempera-ture showed a significant positive correlation with SI.④ After the construction of Tingzikou Reservoir,the temperature of the dis-charged water and the downstream water temperature of Cangxi Station showed a significant warm-lag effect in May and cold-lag effect in October to February in next year.The water temperature at Cangxi Station lagged behind the air temperature change by about 44 days,and the time of arriving at the characteristic water temperature of 18℃was delayed by 16 days compared with the natural process.The Cangxi navigation and hydropower project slowed down the outflow of Tingzikou Reservoir,which had a positive effect on the water temperature recovery of the downstream river.The results of the study can provide support and basis for optimizing reservoir operation and stratified water intake measures.

关键词

水温分层结构/温跃层/坝下水温/日变化/原型观测/航电枢纽工程/亭子口水库

Key words

water temperature stratification structure/thermocline/water temperature downstream dam/daily variation/proto-type observation/navigation and hydropower project/Tingzikou Reservoir

分类

水利科学

引用本文复制引用

张旭,脱友才,王刚,王耀雄,贾云霄,黄滨..亭子口水库坝前水温分层结构及坝下水温节律研究[J].人民长江,2025,56(3):63-72,94,11.

基金项目

国家重点研发计划项目(2022YFC3204200) (2022YFC3204200)

人民长江

OA北大核心

1001-4179

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