Since 2011,the Chinese Academy of Sciences(CAS)has implemented the Strategic Priority Program on Space Science(SPP).A series of scientific satellites have been developed and launched,such as Dark Matter Particle Explo...Since 2011,the Chinese Academy of Sciences(CAS)has implemented the Strategic Priority Program on Space Science(SPP).A series of scientific satellites have been developed and launched,such as Dark Matter Particle Explorer(DAMPE),Quantum Experiments at Space Scale(QUESS),Advanced Space-based Solar Observatory(ASO-S),Einstein Probe(EP),and significant scientific outcomes have been achieved.In order to plan the future space science missions in China,CAS has organized the Chinese space science community to conduct medium and long-term development strategy studies,and summarized the major scientific frontiers of space science as“One Black,Two Dark,Three Origins and Five Characterizations”.Five main scientific themes have been identified for China’s future breakthroughs,including the Extreme Universe,Space-Time Ripples,the Panoramic View of the Sun and Earth,the Habitable Planets,and Biological&Physical Science in Space.Space science satellite missions to be implemented before 2030 are proposed accordingly.展开更多
声学黑洞(acoustic black hole,ABH)效应是遵循幂变规律对梁或薄板结构的厚度进行剪裁,使弯曲波在结构尖端波速降至为零而无法发生反射的现象,从而能够在结构末端实现能量的聚集与高效回收。针对单一声学黑洞结构在实现峰值回收时对外...声学黑洞(acoustic black hole,ABH)效应是遵循幂变规律对梁或薄板结构的厚度进行剪裁,使弯曲波在结构尖端波速降至为零而无法发生反射的现象,从而能够在结构末端实现能量的聚集与高效回收。针对单一声学黑洞结构在实现峰值回收时对外界激励频率敏感的问题,提出基于周期声学黑洞的宽频压电能量回收系统。首先,基于高斯展开法,建立了耦合压电层的声学黑洞压电俘能半解析模型,并在频域范围内结合能带理论分析了周期数、幂指数、中心截断厚度以及黑洞半径对能量回收特性的影响;最后,通过压电能量回收试验,验证了周期声学黑洞对于实现宽频能量回收的有效性。研究结果表明:声学黑洞的各结构参数会通过影响峰值个数、峰值区间长度以及能带结构等因素,对系统的输出功率以及采集效率产生影响。分析结果对实现周期声学黑洞梁的宽频能量回收优化设计具有重要的参考价值。展开更多
基金Supported by Consultation and Evaluation Program on Academic Divisions of the Chinese Academy of Sciences(2022-DX02-B-007)。
文摘Since 2011,the Chinese Academy of Sciences(CAS)has implemented the Strategic Priority Program on Space Science(SPP).A series of scientific satellites have been developed and launched,such as Dark Matter Particle Explorer(DAMPE),Quantum Experiments at Space Scale(QUESS),Advanced Space-based Solar Observatory(ASO-S),Einstein Probe(EP),and significant scientific outcomes have been achieved.In order to plan the future space science missions in China,CAS has organized the Chinese space science community to conduct medium and long-term development strategy studies,and summarized the major scientific frontiers of space science as“One Black,Two Dark,Three Origins and Five Characterizations”.Five main scientific themes have been identified for China’s future breakthroughs,including the Extreme Universe,Space-Time Ripples,the Panoramic View of the Sun and Earth,the Habitable Planets,and Biological&Physical Science in Space.Space science satellite missions to be implemented before 2030 are proposed accordingly.
文摘声学黑洞(acoustic black hole,ABH)效应是遵循幂变规律对梁或薄板结构的厚度进行剪裁,使弯曲波在结构尖端波速降至为零而无法发生反射的现象,从而能够在结构末端实现能量的聚集与高效回收。针对单一声学黑洞结构在实现峰值回收时对外界激励频率敏感的问题,提出基于周期声学黑洞的宽频压电能量回收系统。首先,基于高斯展开法,建立了耦合压电层的声学黑洞压电俘能半解析模型,并在频域范围内结合能带理论分析了周期数、幂指数、中心截断厚度以及黑洞半径对能量回收特性的影响;最后,通过压电能量回收试验,验证了周期声学黑洞对于实现宽频能量回收的有效性。研究结果表明:声学黑洞的各结构参数会通过影响峰值个数、峰值区间长度以及能带结构等因素,对系统的输出功率以及采集效率产生影响。分析结果对实现周期声学黑洞梁的宽频能量回收优化设计具有重要的参考价值。