西苏门答腊Pesisir Selatan reggency Manjuto海滩局部珊瑚白化事件的初步鉴定:水文海洋学观点

Q4 Agricultural and Biological Sciences
U. J. Wisha, R. Dhiauddin, G. A. Rahmawan, Y. J. Wijaya
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引用次数: 0

摘要

亮点研究Manjuto Beash当地珊瑚白化的原因已经得到解决。分析了退潮周期对盐度混合和分层的影响。空间分析数字海岸线分析系统(DSASv5)用于确定曼朱托海滩的海岸线变化。模拟流动模型柔性网格以确定Sungai Pinang Bay内的流动模式。摘要2019年10月,当地社区报告曼朱托滩Acropora sp.群落发生珊瑚白化,Pessir Selatan Regency经历了漂白。它发表在几家当地新闻上,成为地方和中央政府当局以及沿海社区的热门话题。关于造成这种现象的原因有很多不准确的地方。本研究旨在从海洋学的角度确定曼朱托海滩当地珊瑚白化的原因。使用TOA DKK水质检查器在Manjuto海滩周围收集的水质数据进行了描述性统计评估。本研究还利用DSASv5对海岸线的空间变化进行了分析。潮汐数据的时间序列也被用来分析潮差引起的盐度分层。还模拟了一个带有柔性网格的流动模型,以确定曼朱托海滩的水团运动和沿岸水流模式。与支持海洋生物的水质标准相比,溶解氧(DO)、温度和盐度显示出异常。在涨潮和退潮期间,其范围分别为5.8-11.2 mg/L、28-28.3℃和25-28℃。测量的其他参数(pH、电导率、浊度和密度)适用于海洋生物群。研究结果表明,潮差对盐度分层有着独特的影响。地下水供应的入侵导致盐度下降,导致曼朱托海滩当地珊瑚白化。盐度水平的变化也由0-0.31 m/s的潮流引发,导致累积盐度冲击。目前,曼朱托海滩正经历2.36-3.17米/年的吸积,通过洪水-退潮周期改变了水的覆盖范围。这些状态会导致累积的阳光照射和由洪水-潮汐周期引起的盐度冲击。这就是为什么当地珊瑚白化事件无疑是避免的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Preliminary Identification to Local Coral Bleaching Event in Manjuto Beach, Pesisir Selatan Regency, West Sumatra: Hydro-Oceanographic Perspectives
Highlight ResarchThe cause of local coral bleaching in Manjuto Beash has been addressed.The influence of ebb-tide cycles on salinity mixing and stratification was analyzed.Spatial analysis Digital Shoreline Analysis System (DSASv5) was conducted to determine the coastline changes in Manjuto Beach.Flow model flexible mesh was simulated to determine the flow pattern within Sungai Pinang Bay.AbstractIn October 2019, the local community reported the occurrence of coral bleaching of a colony of Acropora sp. at Manjuto Beach, Pesisir Selatan Regency experienced bleaching. It was published in several local news, becoming a trending topic among local and central government authorities and coastal communities. There were many inaccuracies about the cause of this phenomenon. This study aimed to identify the causes of local coral bleaching in Manjuto Beach based on oceanographic perspectives. The water quality data collected using TOA DKK water quality checker in the surrounding Manjuto Beach were assessed descriptive-statistically. This study also analyzed the spatial changes of the coastline using DSASv5. A time series of tidal data was also used to analyze the tidal range-induced salinity stratification. A flow model with a flexible mesh was also simulated to determine the water mass movement and longshore current patterns in Manjuto Beach. Dissolved oxygen (DO), temperature, and salinity showed anomalies compared to the water quality standard to support marine life. During both flood and ebb tides, it ranged from 5.8-11.2 mg/L, 28-28.3oC, and 25-28 o/oo, respectively. The other parameters measured (pH, conductivity, turbidity, and density) were suitable for marine biota. The findings show that tidal range has a unique influence on salinity stratification. The intrusion of groundwater supply resulted in lowering of salinity, inducing local coral bleaching in Manjuto Beach. Changes in salinity levels were also triggered by tidal current ranging from 0-0.31 m/s resulting in cumulative salinity shock. Currently, Manjuto Beach is experiencing accretion ranging from 2.36-3.17 m/year, altering the water coverage through the flood-ebb cycles. Those states cause cumulative sun rays’ exposures and salinity shock induced by flood-ebb cycles. That is why local coral bleaching event is undoubtedly avoided.
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来源期刊
Jurnal Ilmiah Perikanan dan Kelautan
Jurnal Ilmiah Perikanan dan Kelautan Agricultural and Biological Sciences-Food Science
CiteScore
1.60
自引率
0.00%
发文量
35
审稿时长
8 weeks
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