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孔的排布方式对孔型阻尼密封泄漏特性和动力学性能影响研究
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作者 张子涵 陈涛文 +1 位作者 李志刚 李军 《西安交通大学学报》 EI CAS CSCD 北大核心 2024年第4期75-84,共10页
为揭示孔的排布方式对孔型阻尼密封性能的影响规律以及探究最佳排布方式,基于多频椭圆轨迹涡动模型非定常计算流体力学摄动数值方法,研究了不同孔径、孔排布方式下孔型阻尼密封的泄漏特性和动力学性能。采用孔型阻尼密封试件试验数据,... 为揭示孔的排布方式对孔型阻尼密封性能的影响规律以及探究最佳排布方式,基于多频椭圆轨迹涡动模型非定常计算流体力学摄动数值方法,研究了不同孔径、孔排布方式下孔型阻尼密封的泄漏特性和动力学性能。采用孔型阻尼密封试件试验数据,验证了数值方法的可靠性和准确性,通过计算分析了不同孔径(3.175、12.268 mm)、孔排布方式(轴向顺排、周向顺排)、进口预旋(0、0.5)对孔型阻尼密封的泄漏量、动力特性系数和腔室动态压力的影响规律。数值结果表明:大孔径孔型阻尼密封动力学性能较优,具有较高的有效阻尼和较低的穿越频率,但封严性能较差,对应的泄漏量增加了6%~10%;小孔径孔型阻尼密封的泄漏特性和动力学性能对孔的排布方式不敏感,泄漏量偏差小于0.5%,动力特性系数偏差小于7%;对于大孔径孔型阻尼密封,采用周向顺排的方式可获得更好的封严性能以及更优的动力学性能,泄漏量可降低4%,有效阻尼的穿越频率也得到显著减小。该研究可为孔型阻尼密封的设计提供参考。 展开更多
关键词 孔型阻尼密封 泄漏特性 动力学性能 计算流体力学 孔排布方式
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心电图ECG信号自动检测特征提取方法研究进展 被引量:3
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作者 陈韬文 宋家骏 +1 位作者 彭湘安 刘桂雄 《电子测量技术》 北大核心 2022年第19期106-112,共7页
心电图特征参数特征提取技术是人体信号智能化检测领域研究热点之一。论文从差分阈值、模板匹配、小波变换、神经网络等多种特征提取法系统评述常见心电图特征参数自动化检测提取方法,阐述各种方法机理、主要研究应用方向及特点,总结分... 心电图特征参数特征提取技术是人体信号智能化检测领域研究热点之一。论文从差分阈值、模板匹配、小波变换、神经网络等多种特征提取法系统评述常见心电图特征参数自动化检测提取方法,阐述各种方法机理、主要研究应用方向及特点,总结分析指出各方法在不同应用场景下的优缺点。其中神经网络特征提取法准确性高、鲁棒性好,是心电图特征参数提取研究趋势及热点,后续可将神经网络深度学习、自学习与差分阈值、模板匹配、小波变换等特征提取方法相结合,实现更高要求的复杂心电图特征参数检测。 展开更多
关键词 自动化检测 心电图 特征提取 神经网络
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Calculating electron-phonon coupling matrix: Theory introduction,code development and preliminary application 被引量:1
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作者 YE YaoKun WENG MouYi +5 位作者 ZHANG WenTao LIN Weicheng chen taowen PAN Feng ZHENG JiaXin WANG Lin-Wang 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2023年第1期204-214,共11页
Electron-phonon coupling(EPC) in bulk materials is an important effect in multifarious physical and chemical phenomena. It is the key to explaining the mechanisms for superconductivity, electronic transport, etc. The ... Electron-phonon coupling(EPC) in bulk materials is an important effect in multifarious physical and chemical phenomena. It is the key to explaining the mechanisms for superconductivity, electronic transport, etc. The EPC matrix describes the coupling of the electronic eigenstates of the studied system under the perturbation of phonons. Although the EPC matrix is closely relevant to many fundamental physicochemical properties, it remains a challenge to calculate the EPC matrix precisely due to the high computational cost. In recent years, Giustino et al. developed the EPW method on open-source ab-initio software Quantum Espresso, which uses Wannier functions(WFs) to calculate EPC matrix. However, due to the limitation of their implementation,it is not possible yet to calculate the EPC matrix under some important computational conditions, e.g., for DFT+U and HSE calculation. Given the importance of these computational conditions(e.g., for transition metal oxides), we have developed our own implementation of EPC matrix calculation based on the domestic ab-initio software PWmat. Our code allows the DFT+U and HSE correction, so we can get a more accurate EPC matrix in the related problems. In this article, we will first review the formulae and elucidate how to calculate the EPC matrix by constructing WFs. Then we will introduce our code along with its workflow on PWmat and present our test results of two classical semiconductor systems Al As and Si, showing consistency with EPW. Next, the EPC matrix of Li Co O_(2), a classical cathode material for lithium-ion batteries, is calculated using different exchange correlation(XC) functionals including LDA, PBE, DFT+U and HSE. A comparison is provided for the related EPC matrix. It shows there could be a significant difference for the EPC matrix elements due to the use of different XC functionals.Our implementation thus opens the way for fast calculation of EPC for the important class of materials, like the transition metal oxides. 展开更多
关键词 electron-phonon coupling Wannier functions PWmat Quantum Espresso methods
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