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海水温升对冷链换热器换热能力影响分析及应对措施 被引量:1
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作者 刘翠波 王慧渊 刘敏华 《化工机械》 CAS 2021年第6期949-952,共4页
针对滨海核电厂海水水温升高的现实情况,分析了海水温升对在运核电厂冷链换热器换热能力的影响,提出了4种应对海水温升的措施,即增大板片数量、采用大角度波纹板片、增大冷侧海水流量和提高热侧出口温度限值,这4种措施可在不同程度上提... 针对滨海核电厂海水水温升高的现实情况,分析了海水温升对在运核电厂冷链换热器换热能力的影响,提出了4种应对海水温升的措施,即增大板片数量、采用大角度波纹板片、增大冷侧海水流量和提高热侧出口温度限值,这4种措施可在不同程度上提高冷链换热器可接受的冷侧海水入口温度值(T_(SEC)′)。 展开更多
关键词 冷链换热器 海水温升 T_(SEC)′ 热裕量
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Variations in the northern permafrost boundary over the last four decades in the Xidatan region, Qinghai–Tibet Plateau 被引量:4
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作者 LUO Jing NIU Fu-jun +2 位作者 LIN Zhan-ju LIU Ming-hao YIN Guo-an 《Journal of Mountain Science》 SCIE CSCD 2018年第4期765-778,共14页
The distribution and variations of permafrost in the Xidatan region, the northern permafrost boundary of the Qinghai-Tibet Plateau, were examined and analyzed using ground penetrating radar(GPR), borehole drilling, an... The distribution and variations of permafrost in the Xidatan region, the northern permafrost boundary of the Qinghai-Tibet Plateau, were examined and analyzed using ground penetrating radar(GPR), borehole drilling, and thermal monitoring data. Results from GPR profiles together with borehole verification indicate that the lowest elevation limit of permafrost occurrence is 4369 m above sea level in 2012. Compared to previous studies, the maximal rise of permafrost limit is 28 m from 1975 to 2012. The total area of permafrost in the study region has been decreased by 13.8%. One of the two previously existed permafrost islands has disappeared and second one has reduced by 76% in area during the past ~40 years. In addition, the ground temperature in the Xidatan region has increased from 2012 to 2016, with a mean warming rate of ~0.004℃ a^(-1) and ~0.003℃ a^(-1) at the depths of 6 and 15 m, respectively. The rising of permafrost limit in the Xidatan region is mainly due to globalwarming. However, some non-climatic factors such as hydrologic processes and anthropic disturbances have also induced permafrost degradation. If the air temperature continues to increase, the northern permafrost boundary in the Qinghai-Tibet Plateau may continue rising in the future. 展开更多
关键词 Qinghai-Tibet Plateau PERMAFROST Climate warming Permafrost limit Ground penetrating radar Thermal monitoring.
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