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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Impact of river discharge on the coastal water pH and pCO(2) levels during the Indian Ocean Dipole (IOD) years in the western Bay of Bengal
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Impact of river discharge on the coastal water pH and pCO(2) levels during the Indian Ocean Dipole (IOD) years in the western Bay of Bengal

机译:孟加拉西部印度洋偶极子(IOD)年期间河流排放对沿海水pH和pCO(2)水平的影响

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摘要

Monthly variations in inorganic carbon components during January 2010-December 2011 in the coastal Bay of Bengal (BoB) were studied in relation to the variations in Godavari River (GR) discharge using ship board measurements, buoy data and satellite remote sensing data. Higher GR discharge was observed during the 2010 monsoon (1133 m(3) s(-1)) resulting in low salinity and strong stratification in the coastal region. During 2011 monsoon season, low GR discharge (401 m(3) s(-1)) resulted in weaker stratification in the coastal waters. Contrasting atmospheric and oceanic conditions prevailed in the north Indian Ocean during 2010-2011 in association with the negative Indian Ocean Dipole (nIOD) event in 2010 and positive IOD (pIOD) event in 2011. Consequently, anomalous onshore easterly surface winds and warmer Sea Surface Temperature (SST) anomalies occurred in the BoB during nIOD event and an anomalous strong alongshore northeastward surface winds and colder SST anomalies occurred during pIOD event in the coastal western BoB. The observed weaker stratification due to low GR discharge and the anomalous alongshore surface winds favoured coastal upwelling during pIOD event in the 2011 monsoon, and consequently lowered the SST and the pH (pCO(2)) levels by 0.01 units (higher by 60 mu atm) than those observed during the nIOD event. This study thus reveals that reduced GR discharge together with pIOD event contributed to enhanced acidification and pCO(2) levels in the coastal western BoB. It could be envisioned that the enhanced acidity in the coastal waters due to variations in river discharge and phases of IOD may significantly modify the coastal ecosystem that requires careful evaluation. (C) 2015 Elsevier Ltd. All rights reserved.
机译:通过船上测量,浮标数据和卫星遥感数据,研究了孟加拉湾(BoB)沿海地区2010年1月至2011年12月无机碳成分的每月变化与戈达瓦里河(GR)排放量的变化之间的关系。在2010年季风期间观测到较高的GR排放量(1133 m(3)s(-1)),导致沿海地区盐度低且分层强烈。在2011年季风季节期间,低GR排放量(401 m(3)s(-1))导致沿海水域的分层较弱。在2010-2011年期间,北印度洋普遍存在相反的大气和海洋条件,2010年为负印度洋偶极子(nIOD)事件,2011年为正IOD(pIOD)事件。因此,陆上东风和海表温度异常。在nIOD事件期间,BoB中发生了温度(SST)异常,而在西部BoB沿海地区的pIOD事件中,发生了异常强烈的沿海东北向地面风和较冷的SST异常。观测到的由于低GR排放和较弱的沿海地表风导致的分层较弱,有利于2011年季风在pIOD事件期间沿海岸上升,并因此将SST和pH(pCO(2))水平降低了0.01个单位(比大气压高了60亩大气压) ),而不是在nIOD事件中观察到的结果。因此,这项研究表明,减少的GR排放以及pIOD事件有助于增强西部BoB沿海地区的酸化和pCO(2)水平。可以预见,由于河流流量的变化和IOD的阶段而增加的沿海水域酸度可能会大大改变需要仔细评估的沿海生态系统。 (C)2015 Elsevier Ltd.保留所有权利。

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