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程海艳  李江海  赵星  潘赟 《岩石学报》2010,26(1):283-290
塔北隆起西部发育大面积岩浆岩,岩浆岩发育产状的研究不仅对岩浆岩油气藏勘探具有重要意义,而且对塔北隆起碳酸盐岩油气藏研究具有重要意义。本文利用钻井和地震资料,提出塔北隆起二叠纪岩浆岩岩性主要为玄武岩、流纹岩、辉绿岩、正长岩、花岗岩和凝灰岩。岩浆岩发育模式与构造作用密切相关,在英买力低凸起北部地区,主要发育一条逆冲断层,地层受构造作用扰动较少,岩浆岩主要为玄武岩,通过近于垂直的通道到达地表; 英买2地区,构造挤压作用在盐上形成大量的构造裂缝,岩浆岩侵入其中,形成辉绿岩侵入体; 哈拉哈塘地区构造变形微弱,岩浆岩通过垂直的火山通道到达地表,在地表形成了一层平行分布的喷发岩; 而在塔北隆起的中部,由于受拉张作用的影响,地壳发育一定的减压熔融,形成中酸性岩浆,岩浆侵位产生了大量的中酸性侵入体和喷出岩。  相似文献   
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Simulated impacts of global and regional climate change, induced by an enhanced greenhouse effect and by Amazonian deforestation, on the phenology and yield of two grain corn cultivars in Venezuela (CENIAP PB-8 and OBREGON) are reported. Three sites were selected:Turén, Barinas andYaritagua, representing two important agricultural regions in the country. The CERES-Maize model, a mechanistic process-based model, in theDecision Support System for Agrotechnology Transfer (DSSAT) was used for the crop simulations. These simulations assume non-limiting nutrients, no pest damage and no damage from excess water; therefore, the results indicate only the difference between baseline and perturbed climatic conditions, when other conditions remain the same. Four greenhouse-induced global climate change scenarios, covering different sensitivity levels, and one deforestation-induced regional climate change scenario were used. The greenhouse scenarios assume increased air temperature, increased rainfall and decreased incoming solar radiation, as derived from atmospheric GCMs for doubled CO2 conditions. The deforestation scenarios assume increased air temperature, increased incoming solar radiation and decreased rainfall, as predicted by coupled atmosphere-biosphere models for extensive deforestation of a portion of the Amazon basin. Two baseline climate years for each site were selected, one year with average precipitation and another with lower than average rainfall. Scenarios associated with the greenhouse effect cause a decrease in yield of both cultivars at all three sites, while the deforestation scenarios produce small changes. Sensitivity tests revealed the reasons for these responses. Increasing temperatures, especially daily maximum temperatures, reduce yield by reducing the duration of the phenological phases of both cultivars, as expected from CERES-Maize. The reduction of the duration of the kernel filling phase has the largest effect on yield. Increases of precipitation associated with greenhouse warming have no effects on yield, because these sites already have adequate precipitation; however, the crop model used here does not simulate potential negative effects of excess water, which could have important consequences in terms of soil erosion and nutrient leaching. Increases in solar radiation increased yields, according to the non-saturating light response of the photosynthesis rate of a C4 plant like corn, compensating for reduced yields from increased temperatures in deforestation scenarios. In the greenhouse scenarios, reduced insolation (due to increased cloud cover) and increased temperatures combine to reduce yields; a combination of temperature increase with a reduction in solar radiation produces fewer and lighter kernels.A report of thePAN-EARTH Project, Venezuela Case Study.  相似文献   
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