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真实问题导向下生物技术专业创新应用型人才培养模式改革与实践 被引量:1
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作者 郑方亮 付琳 +4 位作者 王翔宇 韩传玉 李辉 霍雅鹏 朱春玉 《微生物学杂志》 CAS CSCD 2023年第5期122-128,共7页
以辽宁大学为例,研究分析了目前该校生物技术专业人才培养中存在的真实问题,结合我国经济结构战略性调整要求和生物技术产业对人才的需求,坚持问题导向,通过优化课程与课堂建设、建立多层次科研训练平台、深化产教融合和校企合作、组建... 以辽宁大学为例,研究分析了目前该校生物技术专业人才培养中存在的真实问题,结合我国经济结构战略性调整要求和生物技术产业对人才的需求,坚持问题导向,通过优化课程与课堂建设、建立多层次科研训练平台、深化产教融合和校企合作、组建“双师型”教学队伍等方式,对生物技术专业创新应用型人才培养模式进行改革与实践。通过跟踪调查结果,验证了创新应用型人才培养模式的效果,具有重要的指导和借鉴意义。 展开更多
关键词 问题导向 生物技术 创新应用型人才 人才培养 教学改革 实践能力 创新能力
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复合漏电模型建立及阶梯场板GaN肖特基势垒二极管设计 被引量:1
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作者 刘成 李明 +7 位作者 文章 顾钊源 杨明超 刘卫华 韩传余 张勇 耿莉 郝跃 《物理学报》 SCIE EI CAS CSCD 北大核心 2022年第5期274-282,共9页
准垂直GaN肖特基势垒二极管(SBD)因其低成本和高电流传输能力而备受关注.但其主要问题在于无法很好地估计器件的反向特性,从而影响二极管的设计.本文考虑了GaN材料的缺陷以及多种漏电机制,建立了复合漏电模型,对准垂直Ga N SBD的特性进... 准垂直GaN肖特基势垒二极管(SBD)因其低成本和高电流传输能力而备受关注.但其主要问题在于无法很好地估计器件的反向特性,从而影响二极管的设计.本文考虑了GaN材料的缺陷以及多种漏电机制,建立了复合漏电模型,对准垂直Ga N SBD的特性进行了模拟,仿真结果与实验结果吻合.基于此所提模型设计出具有高击穿电压的阶梯型场板结构准垂直GaN SBD.根据漏电流、温度和电场在反向电压下的相关性,分析了漏电机制和器件耐压特性,设计的阶梯型场板结构准垂直GaN SBD的Baliga优值BFOM达到73.81 MW/cm^(2). 展开更多
关键词 GaN肖特基二极管 漏电流 击穿电压 阶梯型场板
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Prediction Model of Kinetic Energy Conversion of Tandem Dual-Oscillator Based on Flow-Induced Vibration Experiment
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作者 BAI Xu SUN Meng +1 位作者 han chuan-yu SUN Hai 《China Ocean Engineering》 SCIE EI CSCD 2022年第5期707-719,共13页
Flow-induced vibration energy harvesting devices typically use an elastically supported body immersed in an oncoming flow to convert the sea and river current's hydrokinetic energy into electrical energy.The propo... Flow-induced vibration energy harvesting devices typically use an elastically supported body immersed in an oncoming flow to convert the sea and river current's hydrokinetic energy into electrical energy.The proportion of energy the device collects is greatly influenced by parameters such as the water flow velocity,spacing between device components,structure size,and damping coefficient.For parameter optimization and performance predictions of flow-induced vibration energy harvesting devices,we train a model of the power harvesting efficiency under different damping ratios,stiffnesses,spacing ratios,and reduced velocities based on experimental data.To improve the prediction accuracy,a feedforward network structure is optimized by using the topological evolutionary algorithm and a radial basis function network.Comparative analysis reveals that the radial basis function network model provides the best agreement with the experimental results and realizes accurate predictions of the power harvested by a dual-oscillator system in the vortex-induced vibration,transition region,and galloping.The prediction results show that the model's maximum power harvesting efficiency occurs in the vortex-induced vibration.The efficiency increases and then decreases with increasing stiffness and reduced velocity in this phase;an increase in the spacing ratio causes the effi-ciency to decrease and then increase;finally,increasing the damping ratio enhances the efficiency.The device achieves maximum power harvesting efficiency at a reduced velocity of U_(r)=4.11.The proposed model effectively predicts the maximum efficiency and the corresponding damping ratio and stiffness of the vortex-induced vibration and galloping,providing a new method for predicting tandem dual-oscillator hydrodynamic power conversion in flow-induced vibration. 展开更多
关键词 flow-induced vibration TANDEM double-oscillator radial basis function PREDICTION
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