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风光波流能源与水路交通融合的现状与展望
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作者 陈龙 廖一涛 +2 位作者 潘麒宇 吴晨 王雷竹 《长沙理工大学学报(自然科学版)》 2026年第1期68-86,共19页
推进我国水路交通运输系统清洁能源技术应用是落实“双碳”战略目标、实现“交通强国”与“海洋强国”的重要途径。本文总结了国内外水路交通运输系统基础设施以及水上运载工具利用风光波流清洁能源的现状与前景,分析了海上风电、光伏... 推进我国水路交通运输系统清洁能源技术应用是落实“双碳”战略目标、实现“交通强国”与“海洋强国”的重要途径。本文总结了国内外水路交通运输系统基础设施以及水上运载工具利用风光波流清洁能源的现状与前景,分析了海上风电、光伏、波浪能、潮流能等清洁能源的技术特性与资源禀赋,总结了国内外港口以及船舶中各类新能源技术的应用现状与未来发展趋势。风光波流多能互补是水路交通低碳转型的核心路径,但依然面临成本高、技术成熟度不足、标准缺失等瓶颈,建议通过协同攻关核心技术,优化水路交通运输新能源技术应用激励机制,提升港口及船舶应用新能源的积极性,健全水运交通可再生能源应用的标准和规范,推动交通与能源深度融合。 展开更多
关键词 风光波流 船舶 水路交通 多能互补 清洁能源 交能融合
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Poleward-moving recurrent auroral arcs associated with impulse-excited standing hydromagnetic waves 被引量:1
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作者 HuaYu Zhao Xu-Zhi Zhou +8 位作者 Ying Liu Qiu-Gang Zong Robert Rankin YongFu Wang QuanQi Shi Xiao-Chen Shen Jie Ren Han Liu XingRan Chen 《Earth and Planetary Physics》 CSCD 2019年第4期305-313,共9页
In Earth's high-latitude ionosphere, the poleward motion of east–west elongated auroral arcs has been attributed to standing hydromagnetic waves, especially when the auroral arcs appear quasi-periodically with a ... In Earth's high-latitude ionosphere, the poleward motion of east–west elongated auroral arcs has been attributed to standing hydromagnetic waves, especially when the auroral arcs appear quasi-periodically with a recurrence time of a few minutes. The validation of this scenario requires spacecraft observations of ultra-low-frequency hydromagnetic waves in the magnetosphere and simultaneous observations of poleward-moving auroral arcs near the spacecraft footprints. Here we present the first observational evidence from the multi-spacecraft THEMIS (Time History of Events and Macroscale Interactions during Substorms) mission and the conjugated all-sky imager to support the scenario that standing hydromagnetic waves can generate the quasi-periodic appearance of poleward-moving auroral arcs. In this specific event, the observed waves were toroidal branches of the standing hydromagnetic waves, which were excited by a pulse in the solar wind dynamic pressure. Multi-spacecraft measurements from THEMIS also suggest higher wave frequencies at lower L shells (consistent with the distribution of magnetic field line eigenfrequencies), which indicates that the phase difference across latitudes would increase with time. As time proceeds, the enlarged phase difference corresponds to a lower propagation speed of the auroral arcs, which agrees very well with the ground-based optical data. 展开更多
关键词 poleward-moving auroral ARCS ULF WAVES STANDING HYDROMAGNETIC WAVES field-aligned currents solar wind dynamic pressure pulse
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