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“全球气候变暖”与当前我国经济社会的发展
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作者 孙岗 《中共四川省委省级机关党校学报》 1999年第2期30-32,共3页
在知识经济时代来临之际,要使我国经济持续快速稳定发展,除了深刻研究和运用社会历史发展规律、经济规律之外,还必须重视对高科技和各种自然规律的研究和运用。世界各国经济社会发展的进程表明,全球气候异常产生的气象灾害对各国经济社... 在知识经济时代来临之际,要使我国经济持续快速稳定发展,除了深刻研究和运用社会历史发展规律、经济规律之外,还必须重视对高科技和各种自然规律的研究和运用。世界各国经济社会发展的进程表明,全球气候异常产生的气象灾害对各国经济社会发展的影响是十分巨大的。本世纪80年代以来,全球气候变化的一个显著特征就是“气候变暧”,以至90年代成为近600年来最热的十年。据科学预测,如果不采取必要措施。 展开更多
关键词 全球气候 我国经济 “气候变暖” 二氧化碳 气象灾害 研究和运用 平方千米 公倾 稳定发展 洪涝灾害
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Impact of permafrost degradation on embankment deformation of Qinghai-Tibet Highway in permafrost regions 被引量:7
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作者 彭惠 马巍 +1 位作者 穆彦虎 金龙 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第3期1079-1086,共8页
Based on long-term monitoring data, the relationships between permafrost degradation and embankment deformation are analyzed along the Qinghai-Tibet Highway(QTH). Due to heat absorbing effect of asphalt pavement and c... Based on long-term monitoring data, the relationships between permafrost degradation and embankment deformation are analyzed along the Qinghai-Tibet Highway(QTH). Due to heat absorbing effect of asphalt pavement and climate warming,permafrost beneath asphalt pavement experienced significant warming and degradation. During the monitoring period, warming amplitude of the soil at depth of 5 m under asphalt ranged from 0.21 °C at the XD1 site to 0.5 °C at the KL1 site. And at depth of 10 m, the increase amplitude of ground temperature ranged from 0.47 °C at the NA1 site to 0.07 °C at the XD1 site. Along with ground temperature increase, permafrost table beneath asphalt pavement decline considerably. Amplitude of permafrost table decline varied from 0.53 m at the KL1 site to 3.51 m at the NA1 site, with mean amplitude of 1.65 m for 8 monitoring sites during the monitoring period. Due to permafrost warming and degradation, the embankment deformation all performed as settlement at these sites. At present, those settlements still develop quickly and are expected to continue to increase in the future. The embankment deformations can be divided into homogeneous deformation and inhomogeneous deformation. Embankment longitudinal inhomogeneous deformation causes the wave deformations and has adverse effects on driving comfort and safety, while lateral inhomogeneous deformation causes longitudinal cracks and has an adverse effect on stability. Corresponding with permafrost degradation processes,embankment settlement can be divided into four stages. For QTH, embankment settlement is mainly comprised of thawing consolidation of ice-rich permafrost and creep of warming permafrost beneath permafrost table. 展开更多
关键词 Qinghai-Tibet Highway(QTH) permafrost degradation embankment deformation thawing settlement
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An analytical model for pyrolysis of a single biomass particle 被引量:4
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作者 Mehdi Bidabadi Mohammad Rastegar Moghaddam +2 位作者 Seyed Alireza Mostafavi Farzad Faraji Dizaji Hossein Beidaghy Dizaji 《Journal of Central South University》 SCIE EI CAS CSCD 2015年第1期350-359,共10页
Decreasing in emissions of greenhouse gases to confront the global warming needs to replace fossil fuels as the main doer of the world climate changes by renewable and clean fuels produced from biomass like wood waste... Decreasing in emissions of greenhouse gases to confront the global warming needs to replace fossil fuels as the main doer of the world climate changes by renewable and clean fuels produced from biomass like wood waste which is neutral on the amount of CO2. An analytical and engineering model for pyrolysis process of a single biomass particle has been presented. Using a two-stage semi global kinetic model which includes both primary and secondary reactions, the effects of parameters like shape and size of particle as well as porosity on the particle temperature profile and product yields have been investigated. Comparison of the obtained results with experimental data shows that our results are in a reasonable agreement with previous researchers' works. Finally, a sensitivity analysis is done to determine the importance of each parameter on pyrolysis of a single biomass particle which is affected by many constant parameters. 展开更多
关键词 biomass pyrolysis analytical model single particle sensitivity analysis
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