首页> 外文期刊>Journal of Climate >Antarctic bottom water warming and freshening: contributions to sea level rise, ocean freshwater budgets, and global heat gain.
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Antarctic bottom water warming and freshening: contributions to sea level rise, ocean freshwater budgets, and global heat gain.

机译:南极底层水的变暖和清新:对海平面上升,海洋淡水预算和全球热量获取的贡献。

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摘要

Freshening and warming of Antarctic Bottom Water (AABW) between the 1980s and 2000s are quantified, assessing the relative contributions of water-mass changes and isotherm heave. The analysis uses highly accurate, full-depth, ship-based, conductivity-temperature-depth measurements taken along repeated oceanographic sections around the Southern Ocean. Fresher varieties of AABW are present within the South Pacific and south Indian Oceans in the 2000s compared to the 1990s, with the strongest freshening in the newest waters adjacent to the Antarctic continental slope and rise indicating a recent shift in the salinity of AABW produced in this region. Bottom waters in the Weddell Sea exhibit significantly less water-mass freshening than those in the other two southern basins. However, a decrease in the volume of the coldest, deepest waters is observed throughout the entire Southern Ocean. This isotherm heave causes a salinification and warming on isobaths from the bottom up to the shallow potential temperature maximum. The water-mass freshening of AABW in the Indian and Pacific Ocean sectors is equivalent to a freshwater flux of 73+or-26 Gt yr-1, roughly half of the estimated recent mass loss of the West Antarctic Ice Sheet. Isotherm heave integrated below 2000 m and south of 30 degrees S equates to a net heat uptake of 34+or-14 TW of excess energy entering the deep ocean from deep volume loss of AABW and 0.37+or-0.15 mm yr-1 of sea level rise from associated thermal expansion.
机译:对1980年代至2000年代之间的南极底水(AABW)的变暖和变暖进行了量化,评估了水质变化和等温线升沉的相对贡献。该分析使用高度精确的全深度船基电导率温度深度测量值,这些测量值是沿着南大洋周围重复的海洋学剖面进行的。与1990年代相比,2000年代在南太平洋和南印度洋出现了较新鲜的AABW品种,在南极大陆斜坡附近的最新水域中,淡水最强,并且上升表明该地区产生的AABW盐度最近发生了变化。地区。与其他两个南部盆地相比,韦德尔海底水的新鲜水量明显减少。但是,在整个南大洋中,最冷,最深的水域却减少了。等温线的升沉会导致等深线的盐碱化和变暖,从底部到最浅的潜在温度最大值。印度洋和太平洋地区AABW的水质新鲜度相当于73 + or-26 Gt yr -1 的淡水通量,大约是估计的南极西部近期质量损失的一半冰盖。在2000 m以下和南纬30度以南整合的等温线升沉等同于净吸收34+或14 TW的多余能量,这是由于AABW的深体积损失和0.37+或-0.15 mm yr导致进入深海的相关的热膨胀使海平面上升了1

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