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地下蓄热体新风降温节能技术的研究与应用 被引量:1
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作者 梁韬 叶大法 +2 位作者 吴玲红 金敏刚 张旭 《暖通空调》 北大核心 2009年第12期114-117,共4页
介绍了该技术在上海世博轴的工程应用情况。研究表明地下蓄热体可以用于新风降温,且冷却能力随风量增大而提高。然而系统能效分析表明并非风量越大越好,部分新风降温系统具有更高的效率,需要根据工程的具体情况进行优化设计。
关键词 世博轴 地下蓄热体 全新风降温 部分新风降温 能效分析
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Major Mid-Late Holocene Cooling in the East China Sea Revealed by an Alkenone Sea Surface Temperature Record 被引量:7
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作者 ZHAO Meixun DING Ling +2 位作者 XING Lei QIAO Shuqing YANG Zuosheng 《Journal of Ocean University of China》 SCIE CAS 2014年第6期935-940,共6页
Although the mid-late Holocene cold and dry event about 4000years ago (the 4ka event) has been observed almost globally, it was most prominent in terrestrial climate proxies from the lower latitudes. Here we evaluat... Although the mid-late Holocene cold and dry event about 4000years ago (the 4ka event) has been observed almost globally, it was most prominent in terrestrial climate proxies from the lower latitudes. Here we evaluate the oceanic response to this event in terms of a Holocene sea surface temperature (SST) record reconstructed using the U^7 index for Core B3 on the continen- tal shelf of the East China Sea. The record reveals a large temperature drop of about 5~C from the mid-Holocene (24.7~C at 5.6ka) to the 4ka event (19.2~C at 3.8ka). This mid-late Holocene cooling period in Core B3 correlated with (i) decreases in the East Asia summer monsoon intensity and (ii) the transition period with increased E1 Nifio/Southern Oscillation activities in the Equatorial Pa- cific. Our SST record provides oceanic evidence for a more global nature of the mid-late Holocene climate change, which was most likely caused by a southward migration of the Intertropical Converge Zone in response to the decreasing summer solar insolation in the Northern Hemisphere. However, the large SST drop around Core B3 indicates that the mid-late Holocene cooling was regionally amplified by the initiation/strengthening of eddy circulation/cold front which caused upwelling and resulted in additional SST de- crease. Upwelling during the mid-late Holocene also enhanced with surface productivity in the East China Sea as reflected by higher alkenone content around Core B3. 展开更多
关键词 sea surface temperature alkenone East China Sea 4 ka ITCZ
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