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卧倒门承船厢内水面最大升降值神经网络计算模型 被引量:2
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作者 顾正华 唐洪武 李云 《长江科学院院报》 CSCD 北大核心 2003年第2期9-12,共4页
运用人工神经网络原理,在通过大量学习样本对网络进行训练的基础上,建立了卧倒门启闭时升船机承船厢内水面最大升降值的神经网络计算模型(NNCM—MFWS-SLC-TGO)。根据岩滩升船机和三峡升船机的模型试验资料对网络模型的性能进行了测试。... 运用人工神经网络原理,在通过大量学习样本对网络进行训练的基础上,建立了卧倒门启闭时升船机承船厢内水面最大升降值的神经网络计算模型(NNCM—MFWS-SLC-TGO)。根据岩滩升船机和三峡升船机的模型试验资料对网络模型的性能进行了测试。测试结果表明,所建立的神经网络模型可用于卧倒门启闭时承船厢内水面最大升降值的初步预测。通过实测,计算结果与测试数据是基本吻合的。 展开更多
关键词 升船机 承船厢 卧倒门 水面最大升降 人工神经网络
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突破“浮力”难点的几点做法
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作者 叶正兴 《今日科苑》 2008年第16期262-262,共1页
本文就初中物理教学中就突破"浮力"难点的几点做法,通过简单的实验、问题的讨论、结论的比较,轻易地解决了这一难点。方法富于启发,可操作性强,仅供同仁参考。
关键词 浸没深度 河水海水 物体浮沉 水面升降
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Glacier changes in the eastern Nyainqêntanglha Range of Tibetan Plateau from 1975 to 2013
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作者 JI Qin YANG Tai-bao +2 位作者 HE Yi CHEN Jie WANG Kai 《Journal of Mountain Science》 SCIE CSCD 2016年第4期682-692,共11页
Maritime-type glaciers in the eastern Nyainqêntanglha Range, located in the southeastern part of the Tibetan Plateau, are an important water source for downstream residents and ecological systems. To better under... Maritime-type glaciers in the eastern Nyainqêntanglha Range, located in the southeastern part of the Tibetan Plateau, are an important water source for downstream residents and ecological systems. To better understand the variability of glaciers in this region, we used the band ratio threshold(TM3/TM5 for the Landsat TM /ETM+ and TM4/TM6 for Landsat OLI) to extract glacier outlines in ~1999 and ~2013. After that, we also generated a series of glacier boundaries and monitored glacier variations in the past 40 years with the help of the Chinese Glacier Inventory data(1975) and Landsat TM, ETM+ and OLI data. The total glacier area decreased by 37.69 ± 2.84% from 1975 to 2013. The annual percentage area change(APAC) was ~1.32% a-1 and ~1.29% a-1 in the periods 1975-1999 and 1999-2013, respectively. According to the lag theory, the reaction time is probably about 10 years and we discuss the variations of temperature and precipitation between 1965 and 2011. Temperature and precipitation increased between 1965 and 2011 at a rate of 0.34°C /10 a and 15.4 mm/10 a, respectively. Extensive meteorological data show that the glacier shrinkage rate over the period may be mainly due to increasing air temperature, while the increasing precipitation partly made up for the mass loss of glacier ice resulting from increasing temperature may also lead to the low APAC between 1999 and 2013. The lag theory suggests that glacier shrinkage may accelerate in the next 10 years. Small glaciers were more sensitive to climate change, and there was a normal distribution between glacier area and elevation. Glaciers shrank in all aspects, and south aspects diminished faster than others. 展开更多
关键词 Glacier variation Climate change Nyainqêntanglha Range Temperature Precipitation
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