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深埋特大引水隧洞岩爆微震监测预警方法设计 被引量:1
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作者 董振涛 《水利科学与寒区工程》 2022年第11期114-117,共4页
隧洞岩爆微震会对大型施工建设工程的安全造成影响,一旦处理不当,极容易发生施工事故,需要进行监测和预警。因此,本文对深埋特大引水隧洞岩爆微震监测预警方法进行设计。首先进行微震源监测预警参数获取,建立双向监测预警结构,构建等效... 隧洞岩爆微震会对大型施工建设工程的安全造成影响,一旦处理不当,极容易发生施工事故,需要进行监测和预警。因此,本文对深埋特大引水隧洞岩爆微震监测预警方法进行设计。首先进行微震源监测预警参数获取,建立双向监测预警结构,构建等效EMS监测预警模型,采用微震能量密度测定法实现监测预警。最终的测试结果表明:本文设计的双向EMS监测预警方法最终得出的监测预警响应时间相对较快,仅为1.01 s,很好地控制在1.50 s以下,具有更强的实际应用价值。 展开更多
关键词 深埋特大引水工程 隧洞岩爆 防震结构 微震监测 监测覆盖 预警方法设计
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Effects of Annealing Temperature on Microstructure and Electrochemical Properties of Perovskite-type Oxide LaFeO3 as Negative Electrode for Metal Hydride/Nickel(MH/Ni) Batteries 被引量:1
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作者 YANG Shuqin LI Yuan +3 位作者 YUAN Yongjie dong zhentao REN Kailiang ZHAO Yumeng 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2018年第4期604-608,共5页
We reported the effects of annealing temperatures on microstructure and electrochemical properties of perovskite-type oxide LaFeO3 prepared by stearic acid combustion method. X-Ray diffraction(XRD) patterns show tha... We reported the effects of annealing temperatures on microstructure and electrochemical properties of perovskite-type oxide LaFeO3 prepared by stearic acid combustion method. X-Ray diffraction(XRD) patterns show that the annealed LaFeO3 powder has orthorhombic structure. Scanning electron microscopy(SEM) and transmission electron microscopy(TEM) images show the presence of homogeneously dispersed, less aggregated, and small crystals(30--40 nm) at annealing temperatures of 500 and 600 ℃. However, as the annealing temperature was increased to 700 and 800 ℃, the crystals began to combine with each other and grew into further larger crystals(90--100 nm). The electrochemical performance of the annealed oxides was measured at 60 ℃ using chronopotentiometry, potentiodynamic polarization, and cyclic voltammetry. As the annealing temperature increased, the discharge capacity and anti-corrosion ability of the oxide electrode first increased and then decreased, reaching the optimum values at 600 ℃, with a maximum discharge capacity of 563 mA-h/g. The better electrochemical performance of LaFeO3 annealed at 600℃ could be ascribed to their smaller and more homogeneous crysals. 展开更多
关键词 Metal hydride/nickel(MH/Ni) battery Negative electrode material Perovskite LaFeO3 MICROSTRUCTURE Electrochemical property
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