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波浪正向入射作用于直立堤上波压力的研究
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作者 华艳茹 徐绩青 +1 位作者 杨成渝 吴宋仁 《港工技术》 北大核心 2008年第2期5-7,共3页
通过大量的室内试验,深入研究了波浪正向入射时,立波压力与堤前波高的关系,并与各家公式进行对比,证明堤前波高作为控制参数的可靠性。
关键词 正向入射 堤前 立波压力 可靠性
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基于TDED实验教学改革与实践 被引量:1
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作者 刘志慧 李爱华 +3 位作者 王腾 张亚 王龙庭 战永平 《实验室研究与探索》 CAS 北大核心 2022年第7期211-215,共5页
基于思考-设计-实验-讨论(Think-Design-Experiment-Discussion,TDED)实验教学模式,反向设计学习成果,通过T-D-E-D 4个教学阶段达成对应知识、能力、素养目标。以立波波压力实验教学为例,围绕立波波压力实验主题开展个性化实验内容设置... 基于思考-设计-实验-讨论(Think-Design-Experiment-Discussion,TDED)实验教学模式,反向设计学习成果,通过T-D-E-D 4个教学阶段达成对应知识、能力、素养目标。以立波波压力实验教学为例,围绕立波波压力实验主题开展个性化实验内容设置,使得实验方案设计成为实验教学的重点,采用引导式、自主式与线上线下相结合的教学方法,坚持以学生为主、教师为辅的教学过程,从实验内容、教学方法、教学过程3个方面展开实验教学设计。在2018级船舶与海洋工程专业学生中开展了教学实践。对实验教学改革的问卷调查结果表明,在TDED实验教学模式下,有87%的学生显著提升了解决复杂问题的能力、开发设计能力、沟通交流能力以及团队合作能力。 展开更多
关键词 压力实验 TDED实验教学模式 反向设计 教学实践
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Effects of axial gap on aerodynamic force and response of shrouded and unshrouded blade 被引量:2
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作者 JIANG JinPeng LI JiaWen +1 位作者 CAI GuoBiao WANG Jue 《Science China(Technological Sciences)》 SCIE EI CAS CSCD 2017年第4期491-500,共10页
Forced response analysis of a rocket engine turbine blade was conducted by a decoupled fluid-structure interaction procedure.Aerodynamic forces on the rotor blade were obtained using 3D unsteady flow simulations. The ... Forced response analysis of a rocket engine turbine blade was conducted by a decoupled fluid-structure interaction procedure.Aerodynamic forces on the rotor blade were obtained using 3D unsteady flow simulations. The resulting aerodynamic forces were interpolated to the finite element(FE) model through surface effect elements prior to conducting forced response calculations.Effects of axial gap on aerodynamic forces were studied. In addition, influence of axial gap on the response of the shrouded blade was compared with that on the response of the unshrouded blade. Results demonstrated that as the axial gap increases,time-averaged pressure on the blade surface changes very little, while the pressure fluctuations decrease significantly. Pressure and aerodynamic forces on the blade surface display periodic variation, and the vane passing frequency component is dominant.Amplitudes of aerodynamic forces decrease with increasing axial gap. Restricted by the shroud, deformation and response of shrouded blade are much lower than those of the unshrouded blade. The response of unshrouded blade shows obvious beat vibration phenomenon, while the response of the shrouded blade does not have this characteristic because the shroud restrains multiple harmonics. Blade response in time domain was converted to frequency domain using fast Fourier transformation(FFT).Results revealed that the axial gap mainly affects the forced harmonic at the vane passing frequency, while the other two harmonics at natural frequency are hardly affected. Amplitudes of the unshrouded blade response decrease as the axial gap increases, while amplitudes of the shrouded blade response change very little in comparison. 展开更多
关键词 axial gap forced response shrouded blade unshrouded blade aerodynamic forces
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