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广义系统分离随机偏差两段解耦Wiener滤波器
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作者 王树斌 邓自立 《黑龙江大学自然科学学报》 CAS 2002年第1期41-43,共3页
应用现代时间序列分析方法,基于ARMA新息模型和白噪声估值g,提出了广义系统分离随机偏差两段解耦Wiener滤波器,可统一处理滤波、平滑和预报问题,且具有渐近穗定性和最优性.仿真例子说明了其有效性。
关键词 广义系统 ARMA新息模型 分离随机偏差解耦Wiener滤波器 现代时间序列分析方法 白噪声估值器
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焦炉煤气变压吸附制氢新工艺的开发与应用 被引量:5
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作者 宁红军 赵新亮 曹晓宝 《现代化工》 EI CAS CSCD 北大核心 2007年第7期42-44,46,共4页
介绍了变压吸附技术在焦炉煤气制氢新工艺上的开发与利用。该工艺以平顶山煤业集团天宏焦化公司焦炉煤气为原料,为河南神马尼龙化工公司提供纯氢气,通过冰机冷冻分离工艺对原料气预处理,采用变压吸附技术对原料气进行脱硫处理,采用两段... 介绍了变压吸附技术在焦炉煤气制氢新工艺上的开发与利用。该工艺以平顶山煤业集团天宏焦化公司焦炉煤气为原料,为河南神马尼龙化工公司提供纯氢气,通过冰机冷冻分离工艺对原料气预处理,采用变压吸附技术对原料气进行脱硫处理,采用两段法吸附技术提高氢气回收率等;同时对生产中存在的不足之处进行分析,最后对变压吸附技术的实际应用做了简要叙述。 展开更多
关键词 变压吸附(PSA) 焦炉煤气 压缩 冷冻 两段分离 氢气
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Microphase Separation of Star-diblock Copolymer Films: a Dissipative Particle Dynamics Simulation
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作者 徐毅 冯剑 +3 位作者 陈捷 相明辉 宋新旺 祝仰文 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2010年第6期738-744,746,共8页
The microphase-separating behaviors of two types of star-diblock copolymers (Ax)4(By)4 and (A^Bg)4 in thin films are studied using the simulation technique of dissipative particle dynamics. A variety of ordered ... The microphase-separating behaviors of two types of star-diblock copolymers (Ax)4(By)4 and (A^Bg)4 in thin films are studied using the simulation technique of dissipative particle dynamics. A variety of ordered mesostructures have been observed and the simulated phase diagrams show obvious symmetries for the (Ax)4(By)a films and asymmetries for the (AxBy)4 films, besides, it is easier for the (Ax)4(By)4 than for the (A^By)4 to carry out microphase separation under the same conditions, which has been recognized in bulk and can be ascribed to the structural difference between the two types of star copolymers. There are some correspondences between the mesostructures formed in the film and those formed in bulk at the same composition fraction. Decreasing the thickness of film and strengthening the A-B repulsion both help the mesostructures enhance the degree of order. Composition fraction dependences of the mean-square radius of gyration in the two types of star copolymer films are almost contrary, which can be attributed to the differences in their respective structures. These findings can provide a guide to designing novel microstructures involving star-diblock copolymers via geometrical confinement. 展开更多
关键词 Microphase separation Star-diblock copolymer films Dissipative particle dynamics
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