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后殖民理论视阈下《耻》中强暴事件的意义 被引量:1
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作者 魏钰南 葛立权 《北华大学学报(社会科学版)》 2011年第2期72-75,共4页
从后殖民视角出发,通过对《耻》中所发生的两次"强暴"事件的分析,揭示白人殖民者对被殖民者黑人所犯下罪行的恶果及影响,探讨库切在小说中是如何展现白人通过自己的方式寻求赎罪,重新建立自己的身份地位,及其对白人与黑人之... 从后殖民视角出发,通过对《耻》中所发生的两次"强暴"事件的分析,揭示白人殖民者对被殖民者黑人所犯下罪行的恶果及影响,探讨库切在小说中是如何展现白人通过自己的方式寻求赎罪,重新建立自己的身份地位,及其对白人与黑人之间最终的宽容、和解与和谐共存所寄予的厚望。 展开更多
关键词 后殖民理论 《耻》 强暴事件
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Cloud microphysical differences with precipitation intensity in a torrential rainfall event in Sichuan, China 被引量:5
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作者 HUANG Yong-Jie CUI Xiao-Peng WANG Ya-Ping 《Atmospheric and Oceanic Science Letters》 CSCD 2016年第2期90-98,共9页
High-resolution data of a torrential rainfall event in Sichuan, China, simulated by the WRF model, were used to analyze the cloud microphysical differences with precipitation intensity. Sixhourly accumulated rainfall ... High-resolution data of a torrential rainfall event in Sichuan, China, simulated by the WRF model, were used to analyze the cloud microphysical differences with precipitation intensity. Sixhourly accumulated rainfall was classified into five bins based on rainfall intensity, and the cloud microphysical characteristics and processes in different bins were studied. The results show that:(1) Hydrometeor content differed distinctly among different bins. Mixing ratios of cloud water, rain water, and graupel enhanced significantly and monotonously with increasing rainfall intensity. With increasing precipitation intensity, the monotonous increase in cloud water number concentration was significant. Meanwhile, number concentrations of rain water and graupel increased at first and then decreased or increased slowly in larger rainfall bins.(2) With precipitation intensity increasing, cloud microphysical conversion processes closely related to the production of rainwater, directly(accretion of cloud water by rain(QCLcr) and melting of graupel(QMLgr)) or indirectly(water vapor condensation and accretion of cloud water by graupel), increased significantly.(3) As the two main sources of rainwater, QCLcrincreased monotonously with increasing precipitation intensity, while QMLgr increased slowly, even tending to cease increasing in larger rainfall bins. 展开更多
关键词 cloud microphysics cloud microphysical processes torrential rainfall numerical simulation
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