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基于域饱和度的二维应用层多播模型
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作者 许建真 全宗勇 张福炎 《计算机科学》 CSCD 北大核心 2009年第3期69-73,共5页
提出了一种基于域饱和度的二维应用层多播模型TDRS,该模型以域为基础,具有控制开销小、高效、分布式的结构。重点阐述了多播节点的加入和退出过程,首先以域饱和度为基础平衡选取目标域,接着以DCMR算法二次择优产生域内路径,最终达到ALM... 提出了一种基于域饱和度的二维应用层多播模型TDRS,该模型以域为基础,具有控制开销小、高效、分布式的结构。重点阐述了多播节点的加入和退出过程,首先以域饱和度为基础平衡选取目标域,接着以DCMR算法二次择优产生域内路径,最终达到ALM拓扑结构的整体优化。仿真结果表明TDRS模型能有效减少网络传输冗余,混乱情况下自愈性强、传输数据速度快,具有低延迟、低链路压力的特点,同时解决了现实网络中部分节点服务能力限制的问题,增强了系统的实用性和扩展性。 展开更多
关键词 应用层多播 域饱和度 二维 度约束
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Relationship between the transition frequency of local fluid flow and the peak frequency of attenuation 被引量:1
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作者 曹呈浩 张宏兵 +1 位作者 潘益鑫 滕新保 《Applied Geophysics》 SCIE CSCD 2016年第1期156-165,221,共11页
Local fluid flow(LFF) at the mesoscopic scale is the main dissipation mechanism of seismic waves in heterogeneous porous media within the seismic frequency band.LFF is easily influenced by the structure and boundary... Local fluid flow(LFF) at the mesoscopic scale is the main dissipation mechanism of seismic waves in heterogeneous porous media within the seismic frequency band.LFF is easily influenced by the structure and boundary conditions of the porous media,which leads to different behaviors of the peak frequency of attenuation.The associated transition frequency can provide detailed information about the trend of LFF;therefore,research on the transition frequency of LFF and its relationship with the peak frequency of the corresponding attenuation(i.e.,inverse of quality factor) facilitates the detailed understanding of the effect of inner structures and boundary conditions in porous media.In this study,we firstly obtain the transition frequency of fluid flux based on Biot's theory of poroelasticity and the fast Fourier transform algorithm in a sample containing one repeating unit cell(RUC).We then analyze changes of these two frequencies in porous media with different porous properties.Finally,we extend our analysis to the influence of the undrained boundary condition on the transition frequency and peak frequency in porous media with multiple RUCs.This setup can facilitate the understanding of the effect from the undrained boundary condition.Results demonstrate that these two frequencies have the same trend at low water saturation,but amplitude variations differ between the frequencies as the amount of saturation increases.However,for cases of high water saturation,both the trend and the amplitude variation of these two frequencies fit well with each other. 展开更多
关键词 Local fluid flow peak frequency transition frequency saturation boundary condition
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Supersaturation controlled growth of MAFAPbI3 perovskite film for high efficiency solar cells 被引量:4
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作者 Dong Liu Wenjia Zhou +2 位作者 Haoying Tang Pengfei Fu Zhijun Ning 《Science China Chemistry》 SCIE EI CAS CSCD 2018年第10期1278-1284,共7页
Controlling the nucleation and growth of organic-inorganic hybrids perovskite is of key importance to improve the morphology and crystallinity of perovskite films. However, the growth mechanism of perovskite films bas... Controlling the nucleation and growth of organic-inorganic hybrids perovskite is of key importance to improve the morphology and crystallinity of perovskite films. However, the growth mechanism of perovskite films based on classical crystallization theory is not fully understood. Here, we develop a supersaturation controlled strategy(SCS) to balance the nucleation and crystal growth speeds. By this strategy, we are able to find an ideal supersaturation region to realize a balance of nucleation and crystal growth, which yields highly crystallized perovskite films with micrometer-scale grains. Besides, we provide a thoughtful analysis of nucleation and growth based on the fabrication of the perovskite films. As a result, the highest photovoltaic power conversion efficiencies(PCE) of 19.70% and 20.31% are obtained for the planar and the meso-superstructured devices, respectively. This strategy sheds some light for understanding the film growth mechanism of high quality perovskite film, and it provides a facile strategy to fabricate high efficiency perovskite solar cells. 展开更多
关键词 perovskite solar cell nucleation and growth SUPERSATURATION
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