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一类非奇异线性方程组的快速解法
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作者 刘小刚 畅大为 《天水师范学院学报》 2006年第5期22-23,共2页
通过对非奇异系数矩阵A的Jacobi分裂,利用Jacobi收敛的条件,把系数矩阵的逆通过级数的形式表示,从而找到了一条快速解决一类非奇异线性方程组的方法,即当系数矩阵A的Jacobi收敛时,使得线性方程组的解x=A-1b=D-1b,或者x=A-1b=1s b。最后... 通过对非奇异系数矩阵A的Jacobi分裂,利用Jacobi收敛的条件,把系数矩阵的逆通过级数的形式表示,从而找到了一条快速解决一类非奇异线性方程组的方法,即当系数矩阵A的Jacobi收敛时,使得线性方程组的解x=A-1b=D-1b,或者x=A-1b=1s b。最后给出三个例子,以说明这种方法的快速有效性。 展开更多
关键词 Jacobi分裂 非奇异M阵 收敛性 谱半径
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某特大型牧场项目电气设计简析 被引量:1
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作者 任艳楠 《智能建筑电气技术》 2023年第3期38-40,62,共4页
本文结合实际工程案例,提出了低压配电线路供电半径的确定方法,分析了10kV中压配电系统采用环网方式的可靠性与经济性,论证了全光视频回传方案在超大型项目中可行性及应用优势,为同类工程项目提供了案例参考。
关键词 线路电压损失 供电半径 10kV环网 分光器 全光网络
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Dependence of interface energetics and kinetics on catalyst loading in a photoelectrochemical system
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作者 Yumin He Srin ivas Vanka +9 位作者 Tianyue Gao Da He Jeremy Espano Yanyan Zhao Qi Dong Chaochao Lang Yongjie Wang Thomas W. Hamann Zetian Mi Dunwei Wang 《Nano Research》 SCIE EI CAS CSCD 2019年第9期2378-2384,共7页
Solar hydrogen production by the photoelectrochemical method promises a means to store solar energy.While it is generally understood that the process is highly sensitive to the nature of the interface between the semi... Solar hydrogen production by the photoelectrochemical method promises a means to store solar energy.While it is generally understood that the process is highly sensitive to the nature of the interface between the semiconductor and the electrolyte,a detailed understanding of this interface is still missing.For instance,few prior studies have established a clear relationship between the interface energetics and the catalyst loading amount.Here we aim to study this relationship on a prototypical Si-based photoelectrochemical system.Two types of interfaces were examined,one with GaN nanowires as a protection layer and one without.It was found that when GaN was present,higher Pt loading (> 0.1 μg/cm2) led to not only better water reduction (and,hence,hydrogen evolution) kinetics but also more favorable interface energetics for greater photovoltages.In the absence of the protection layer,by stark contrast,increased Pt loading exhibited no measurable influence on the interface energetics,and the main difference was observed only in the hydrogen evolution kinetics.The study sheds new light on the importance of interface engineering for further improvement of photoelectrochemical systems,especially concerning the role of catalysts and protection layers. 展开更多
关键词 PHOTOELECTROCHEMISTRY water splitt ing Si hydroge N evolutio N CATALYST nano WIRES
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