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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Modeling the evolution of the Arctic mixed layer during the fall 1997 Surface Heat Budget of the Arctic Ocean (SHEBA) Project using measurements of Be-7
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Modeling the evolution of the Arctic mixed layer during the fall 1997 Surface Heat Budget of the Arctic Ocean (SHEBA) Project using measurements of Be-7

机译:使用Be-7的测量值模拟1997年秋季北冰洋表面热收支(SHEBA)项目期间北极混合层的演化

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During the Surface Heat Budget of the Arctic Ocean (SHEBA) project in October 1997 the first measurements of Be-7 ever made within the Arctic Ocean were used to reconstruct the evolution of the mixed layer over the previous season and confirmed that the reservoir of heat beneath the fall mixed layer was emplaced in the summer, rather than input cumulatively over several seasons or advected in from distant sources. As suggested by McPhee et al. [1998], several times as much heat was emplaced at SHEBA than at Arctic Ice Dynamics Joint Experiment 20 years earlier. A likely mechanism for this would be substantially greater lead opening coupled with the positive feedback loop between increased open water, increased heat absorption, and further ice melting. In addition, a rate of net primary production greater than or equal to 13 gC m(-2) for the preceding spring-summer period was derived using this mixed layer history with an oxygen profile from the fall. [References: 16]
机译:在1997年10月的“北冰洋地表热量收支”项目中,北冰洋曾经进行的Be-7的首次测量被用于重建上一季节混合层的演化,并证实了储热秋季在地下放置混合层,而不是在几个季节内累积输入或从遥远的源头来平流。正如McPhee等人所建议的。 [1998],与20年前的冰冰动力学联合实验相比,SHEBA的热量增加了几倍。一种可能的机制是,更大的导线开度,再加上增加的开水,增加的热吸收和进一步的冰融化之间的正反馈回路。另外,使用该混合层的历史记录和秋季的氧气分布,得出了前一个春夏季期间净初级生产力的比率大于或等于13 gC m(-2)。 [参考:16]

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