利用通风太阳能高空气球(shab - v)进行高度控制

Tristan K. Schuler, Michael Debbins, Maxwell Cobar, J. Thangavelautham, D. Sofge
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摘要

通风太阳能高空气球(shab - v)利用具有理想热性能的轻型气球外壳吸收直接太阳辐射,并通过传导和对流加热外壳和内部环境空气。因此,这些气球不需要升力气体来产生升力,是一种简单、廉价、被动的高空气球飞行形式。直到最近,shab还没有排气能力,并且严格地自由漂浮在高空科学任务中。在这项工作中,我们介绍了通风太阳能高空气球(SHAB- v)的排气技术开发和飞行实验,早期的排气实验证明,用机械通风的SHAB改变高度是可能的。这些早期的飞行是定时任务,有精确定时的通风口;排气后,气球下降到一个新的高度,并在新的平衡状态下安定下来。在最近的飞行中,我们引入了高度控制来引导气球到达特定的高度。在这些飞行中,我们演示了精确的高度控制,精确到16公里,高度振荡为±75米,并通过进入不同的气流多次改变了shab - v的水平轨迹。改变shab高度的能力可以在未来导致更复杂的机动,例如通过利用不同大气层层的相反风来保持站点或航路点轨迹。
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Altitude Control with Vented Solar High Altitude Balloons (SHAB-Vs)
Vented Solar High Altitude Balloons (SHAB-Vs) utilize a lightweight balloon envelope with ideal thermal properties for absorbing direct solar radiation and heating the envelope and internal ambient air through conduction and convection. These balloons therefore do not require a lifting gas to generate lift, and are a simple, inexpensive, passive form of high altitude balloon flight. Until recently, SHABs have not had venting capabilities and been strictly free floating for high altitude science missions. In this work we present vent technology development and flight experiments for vented solar high altitude balloons (SHAB-Vs), Early vent experiments proved that changing altitude with a mechanically vented SHAB was possible. These early flights were on timed missions with precisely timed vent openings; after venting the balloon descended to a new altitude and settled at the new equilibrium. On more recent flights we introduced altitude control to guide the balloons to specific altitudes. During these flights we demonstrated precise altitude control down to 16 km with ± 75 m altitude oscillations and changed the horizontal trajectory of the SHAB-Vs several times by entering different wind flows. The ability to change the altitude of the SHABs can lead to more sophisticated maneuvers in the future such as station-keeping or waypoint trajectory following by leveraging opposing winds at various layers of the atmosphere.
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