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| 1 | Assessment of wind energy potential in China显示文摘China wind atlas was made by numerical simulation and the wind energy potential in China was calculated. The model system for wind energy resource assessment was set up based on Canadian Wind Energy Simulating Toolkit (WEST) and the simulating method was as follows. First, the weather classes were obtained depend on meteorological data of 30 years. Then, driven by the initial meteorological field produced by each weather class, the meso-scale model ran for the distribution of wind energy resources according each weather class condition one by one. Finally, averaging all the modeling output weighted by the occurrence frequency of each weather class, the annual mean distribution of wind energy resources was worked out. Compared the simulated wind energy potential with other results from several activities and studies for wind energy resource assessment, it is found that the simulated wind energy potential in mainland of China is 3 times that from the second and the third investigations for wind energy resources by CMA, and is similar to the wind energy potential obtained by NREL in Solar and Wind Energy Resource Assessment(SWERA) project. The simulated offshore wind energy potential of China seems smaller than the true value. According to the simulated results of CMA and considering lots of limited factors to wind energy development, the final conclusion can be obtained that the wind energy availability in China is 700~1 200 GW, in which 600~1 000 GW is in mainland and 100~200 GW is on offshore, and wind power will become the important part of energy composition in future. | Zhu Rong Zhang De Wang Yuedong Xing Xuhuang Li Zechun | 2009 | Engineering Sciences2009,7,2: | 5 |
| 2 | Late Mesozoic magmatism in the East Qinling Orogen, China and its tectonic implications显示文摘The Qinling Orogen in Central China records the history of a complex geological evolution and tectonic transition from compression to extension during the Late Mesozoic,with concomitant voluminous granitoids formation.In this study,we present results from petrological,geochemical,zircon U-Pb-Lu-Hf isotopic studies on the Lengshui felsic dykes from Luanchuan region in the East Qinling Orogen.We also compile published geochronological,geochemical,and Hf isotopic data from Luanchuan region and present zircon Hf isotopic contour maps.The newly obtained age data yield two group of ages at w145 Ma and 140 Ma for two granite porphyries from the Lengshui felsic dykes,with the w145 Ma interpreted as response to the peak of magmatism in the region,and the w140 Ma as the timing of formation of the felsic dykes.The corresponding Hf isotopic data of the granite porphyries display negative εHf(t) values of e16.67 to e4.61,and Hf crustal model ages (TDM^C) of 2255e1490 Ma,indicating magma sourced from the melting of Paleo- to Mesoproterozoic crustal materials.The compiled age data display two major magmatic pulses at 160e130 Ma and 111e108 Ma with magmatic quiescence in between,and the zircon Hf isotopic data display εHf(t) values ranging from e41.9 to 2.1 and TDM^C values of 3387e1033 Ma,suggesting mixed crustal and mantle-derived components in the magma source,and correspond to multiple tectonic events during the Late Mesozoic.The Luanchuan granitoids are identified as I-type granites and most of these are highly fractionated granites,involving magma mixing and mingling and crystal fractionation.The tectonic setting in the region transformed from the Late Jurassic syn-collision setting to Early Cretaceous within-plate setting,with EeW extension in the Early Cretaceous.This extension is correlated with the NeS trending post-collisional extension between the North China Craton and Yangtze Craton as well as the EeW trending back-arc extension triggered by the westward Paleo-Pacific Plate subduction,eventually leading to lithospheric thinning,asthenospheric upwelling,mafic magma underplating,and crustal melting in the East Qinling Orogen. | Fan Yang Fei Xue M. Santosh Gongwen Wang Sung Won Kim Zhiwei Shen Wenjuan Jia Xuhuang Zhang | 2019 | Geoscience Frontiers2019,10,5: | 2 |
| 3 | Abusive supervision and work behaviors: The mediating role of LMX显示文摘 | EricaXu XuHuang Catherine K.Lam QingMiao | 2012 | J. Organiz. Behav2012,,4: | 2 |
| 4 | Breaking the Silence Culture: Stimulation of Participation and Employee Opinion Withholding Cross‐nationally显示文摘 | XuHuang Evert Van deVliert Gerben Van derVegt | 2005 | Management and Organization Review2005,,3: | 1 |
| 5 | 显示文摘 | Chen Xuhuang Shi Wenxiong Yang Shihai | 2008 | Journal of Applied Polymer Science2008,109,24: | 1 |
| 6 | Perceived Interactional Justice and Trust‐in‐supervisor as Mediators for Paternalistic Leadership显示文摘 | MinWu XuHuang ChenweiLi WuLiu | 2012 | Management and Organization Review2012,,1: | 1 |