群岛峡道浓盐水排放扩散的三维数值模拟

李春辉, 李瑞杰, 肖千璐, 傅小燕, 张海春

海洋学研究 ›› 2016, Vol. 34 ›› Issue (4) : 39-45.

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海洋学研究 ›› 2016, Vol. 34 ›› Issue (4) : 39-45. DOI: 10.3969/j.issn.1001-909X.2016.04.005
研究论文

群岛峡道浓盐水排放扩散的三维数值模拟

  • 李春辉1, 李瑞杰2, 肖千璐2, 傅小燕2, 张海春3
作者信息 +

3D numerical simulation of strong brine discharging into archipelagic channel

  • LI Chun-hui1, LI Rui-jie2, XIAO Qian-lu2, FU Xiao-yan2, ZHANG Hai-chun3
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摘要

采用三维潮流温盐数学模型对六横岛附近海域的水动力环境及盐度场分布进行数值模拟,并以实测资料进行验证,所建立模型可以较好地反映该海域潮流动力特征及盐度场的分布情况。利用验证后的三维数学模型,对海水淡化工程浓盐水排放后盐度场分布进行计算,将排放后的盐度分布与工程前进行对比分析,并推算盐升面积及垂向盐度增量。结果表明,海水淡化工程排放的浓盐水对六横岛海域盐度分布的影响主要集中在排水口附近的底层,影响区域呈带状分布,最大盐度增量为1.2左右,且排水口附近海域出现盐度垂向分层。

Abstract

The hydrodynamic environment and the salinity field distribution around Liuheng Island are simulated with a 3D current-temperature-salt numerical model and the simulation results are verified with the field data, which shows the computation results are able to reflect the hydrodynamic characteristics and the salty-field objectively. Base on this 3D numerical model, the salinity field distribution after the discharge of the concentrated brine from seawater desalination is calculated and compared with the salinity field distribution before the discharge. The results show that the influence of concentrated brine discharge is mainly centralized at the bottom water layer in a zonation distribution near the outlet around where the salinity is stratified in vertical and the maximum increment of the salinity is about 1.2.

关键词

浓盐水 / 海水淡化 / 数值模拟 / 六横岛

Key words

strong brine / seawater desalination / mathematic simulation / Liuheng Island

引用本文

导出引用
李春辉, 李瑞杰, 肖千璐, 傅小燕, 张海春. 群岛峡道浓盐水排放扩散的三维数值模拟[J]. 海洋学研究. 2016, 34(4): 39-45 https://doi.org/10.3969/j.issn.1001-909X.2016.04.005
LI Chun-hui, LI Rui-jie, XIAO Qian-lu, FU Xiao-yan, ZHANG Hai-chun. 3D numerical simulation of strong brine discharging into archipelagic channel[J]. Journal of Marine Sciences. 2016, 34(4): 39-45 https://doi.org/10.3969/j.issn.1001-909X.2016.04.005
中图分类号: P731.12   

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基金

国家自然科学基金项目资助(41276017);国家科技支撑计划项目资助(2009BAB47B08);江苏省普通高校研究生科研创新计划项目资助(KYZZ15_0143)

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