首页|期刊导航|水利水电技术(中英文)|地质灾害与人类活动复合扰动引起的景观重构对河流水质的影响

地质灾害与人类活动复合扰动引起的景观重构对河流水质的影响OA

Impacts of landscape reconstruction caused by combined disturbances of geological disasters and human activities on river water quality

中文摘要英文摘要

[目的]阐明干热河谷流域内地质灾害与强人类影响复合驱动下的景观格局重构对河流水质的定量影响机制,为西南生态脆弱区水土资源协同管控提供科学依据.[方法]以金沙江下游小江流域为研究对象,集成水-沙-水质同步监测网络,运用Fragstats4.2软件开展景观格局量化分析,结合冗余分析方法,系统解析人类活动与地质灾害共同作用下的景观重构对河流水质的影响.[结果]结果显示:(1)总磷、总氮、氨氮和COD等关键水质指标在汛期的平均值分别是非汛期平均值的2.00倍、1.88倍、3.21倍和4.43倍.(2)灾害迹地区的总氮和COD平均浓度分别为2.28 mg/L和27.36 mg/L,居民区为 2.03 mg/L 和 9.23mg/L,以及耕地区为 2.00 mg/L 和 6.60 mg/L.(3)场次暴雨条件下,总磷、总氮、氨氮和COD的雨前通量是雨后通量的1.95倍、2.41倍、2.34倍和4.74倍,且灾害迹地区域的通量增长最为显著.(4)在不同缓冲区尺度,所选景观指标能够解释汛期超过94.00%的水质变化,对水质变异解释程度较高的景观格局指数分别为灾害迹地的聚集性指数(43.10%)、居民用地的散布与毗邻指数(40.70%)、耕地的景观分离指数(16.80%).[结论]小江流域水质指标呈现显著季节性差异,在空间维度上污染物浓度梯度呈现出灾害迹地区大于居民区大于耕地区的特征.在暴雨的驱动下,空间分异特征被进一步放大.滑坡泥石流迹地对流域景观格局的重构同城镇化和农业发展一样,可能造成河流水质进一步恶化.研究成果可为西南干热河谷流域水土保持、水环境保护和灾害防治提供科学指导.

[Objective]To clarify the quantitative impact mechanism of landscape pattern reconstruction on river water quality under the compound influence of geological disasters and intensive human activities in dry-hot valley basins,thereby providing a scientific basis for the coordinated management of soil and water resources in ecologically fragile areas of Southwest China.[Methods]Taking the Xiaojiang River Basin in the lower reaches of the Jinsha River as the study area,a synchronous monitoring network for water,sediment,and water quality was integrated.Landscape patterns were quantitatively analyzed using Fragstats 4.2 software.Redundancy analysis was applied to systematically investigate the impact of landscape reconstruction on river water quality under the combined action of human activities and geological disasters.[Results]The results showed that:(1)the average values of key water quality indicators such as total phosphorus,total nitrogen,ammonia nitrogen,and COD during the flood season were 2.00,1.88,3.21 and 4.43 times higher than those of the non-flood season,respectively.(2)The average concentrations of total nitrogen and COD were 2.28 mg/L and 27.36 mg/L in the disaster-affected areas,2.03 mg/L and 9.23 mg/L in the residential areas,and 2.00 mg/L and 6.60 mg/L in the cultivated land.(3)Under rainstorm events,the pre-rain fluxes of total phosphorus,total nitrogen,ammonia nitrogen,and COD were 1.95,2.41,2.34,and 4.74 times higher than the post-rain fluxes,with the most pronounced increase observed in the disaster-affected areas.(4)At different buffer zone scales,the selected landscape indices explained over 94.00%of the water quality variation during the flood season.The indices with the highest explanation rate were the aggregation index of disaster-affected areas(43.10%),the dispersion and adjacency index of residential areas(40.70%),and the division index of cultivated land(16.80%).[Conclusion]Water quality indicators in the Xiaojiang River Basin exhibit significant seasonal variations.Spatially,pollutant concentration gradient follows the pattern:disaster-affected areas>residential areas>cultivated land.These spatial disparities are further amplified under the influence of rainstorm.Landscape pattern reconstruction caused by landslides and debris flows-similar to that driven by urbanization and agricultural expansion-may cause further deterioration of river water quality.The findings provide scientific guidance for soil and water conservation,aquatic environment protection,and disaster mitigation in the dry-hot valleys of Southwest China.

唐鸿磊;杨逸飞;刘璐;陈东

昆明理工大学 电力工程学院,云南 昆明 650500昆明理工大学 电力工程学院,云南 昆明 650500水利部发展研究中心,北京 100083中国科学院 地理科学与资源研究所,北京 100083

建筑与水利

干热河谷土地利用景观格局灾害迹地河流水质人类活动时空分布生态脆弱区

dry-hot valleysland uselandscape patterndisaster-affected areasriver water qualityhuman activitiesspatiotemporal distributionecologically fragile areas

《水利水电技术(中英文)》 2026 (5)

14-27,14

国家重点研发计划项目"泥沙与生源要素变化对生物生境影响的调控技术及应用"(2022YFC3203903)中国水利水电科学研究院流域水循环模拟与调控国家重点实验室开放研究基金项目(IWHR-SKL-KF202220)云南省基础研究计划青年项目(202201AU070130)国家自然科学基金项目(52469014)

10.13928/j.cnki.wrahe.2026.05.002

评论