水文地质工程地质
水文地質工程地質
수문지질공정지질
HYDROGEOLOGY AND ENGINEERING GEOLOGY
2010年
2期
32-35,41
,共5页
大沙河河水%海水%水文化学%海水入侵
大沙河河水%海水%水文化學%海水入侵
대사하하수%해수%수문화학%해수입침
Dasha river water%seawater%hydrochemistry%seawater intrusion
为了解深圳沿岸河口处海水与河水的混合关系,在大沙河下游靠近河口段密集取17件河水样,依据其水化学数据,分析了主要离子Ca、Mg、Na、K、SO_4、HCO_3与Cl的关系,Br与Cl的关系以及piper三线图解,在研究区河段从上游至人海口,对河水样品有如下认识:(1)上游4个样品(Cl<100mg/L)接受降水和地下水的补给;(2)4个样品(150mg/L<Cl<1500mg/L)受人类活动的污染影响;(3)橡胶坝上游3个样品(1500mg/L<Cl<4000mg/L)处于海水与污染水的过渡带;(4)橡胶坝下游6个样品(Cl浓度5000~10000mg/L左右)是海水与淡水的混合.
為瞭解深圳沿岸河口處海水與河水的混閤關繫,在大沙河下遊靠近河口段密集取17件河水樣,依據其水化學數據,分析瞭主要離子Ca、Mg、Na、K、SO_4、HCO_3與Cl的關繫,Br與Cl的關繫以及piper三線圖解,在研究區河段從上遊至人海口,對河水樣品有如下認識:(1)上遊4箇樣品(Cl<100mg/L)接受降水和地下水的補給;(2)4箇樣品(150mg/L<Cl<1500mg/L)受人類活動的汙染影響;(3)橡膠壩上遊3箇樣品(1500mg/L<Cl<4000mg/L)處于海水與汙染水的過渡帶;(4)橡膠壩下遊6箇樣品(Cl濃度5000~10000mg/L左右)是海水與淡水的混閤.
위료해심수연안하구처해수여하수적혼합관계,재대사하하유고근하구단밀집취17건하수양,의거기수화학수거,분석료주요리자Ca、Mg、Na、K、SO_4、HCO_3여Cl적관계,Br여Cl적관계이급piper삼선도해,재연구구하단종상유지인해구,대하수양품유여하인식:(1)상유4개양품(Cl<100mg/L)접수강수화지하수적보급;(2)4개양품(150mg/L<Cl<1500mg/L)수인류활동적오염영향;(3)상효패상유3개양품(1500mg/L<Cl<4000mg/L)처우해수여오염수적과도대;(4)상효패하유6개양품(Cl농도5000~10000mg/L좌우)시해수여담수적혼합.
In order to study the mixing relationship between seawater and surface water on the coast of Shenzhen, 17 river water samples were collected near the estuary in the downstream of the Dasha river which disembogue into the sea. According to the hydrochemistry data, the relationships of major ions (Ca ~(2+) 、Mg~(2+) , Na~+ 、K~+ 、SO_4~(2-)、HCO_3~ -) vs. Cl~- , Br~- vs. Cl~- and the piper diagram were analyzed. The river water data in comparison with seawater dilution lines in the scatter diagrams are divided into four groups: (1) 6 samples with salinities around 5 000 ~ 10 000 mg/L Cl~- , explained by the mixing of seawater with fresh water in downstream of rubber-dam; (2) 4 samples with salinities lower than 100 mg/L Cl~-, recharged by precipitation and groundwater in the upstream; (3)4 samples with salinities around 150 ~ 1500mg/L Cl~ -, resulted from anthropogenic contamination along the river; (4) 3 samples with salinities around 1 500 ~4 000mg/L Cl~- , characterized by the transition zone between polluted river water and seawater.