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WATER BASED PROPELLANT FOR COLD GAS THRUSTER

机译:水冷推进器用水推进剂

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摘要

Microelectromechanical systems (MEMS) and nanoelectromechanical systems (NEMS) have produced ideas and techniques for creating new devices at the microano scale. Nano/pico satellites have limited orientation capability partly due to the current state of microthruster devices. Development of a self-contained micro propulsion system would enable dynamic orbital maneuvering of pico- and nano-class satellites. The act of vaporizing a fluid via nanochannels to vacuum has not been studied and the limitations are unknown, but it could provide a novel method of propulsion for small satellites. However, solution properties are transient during vaporization which affects fluid flow. Thus, experiments have been designed to measure solution properties including density, evaporation rate, and vaporization pressure. A setup has been designed monitor the solution mass and volume inside a vacuum chamber. Evaporation of the solution is affected by the vacuum pressure, capillary tubing diameter, solution temperature, and solution concentration. When maintained at the solution vapor pressure, the vaporization rate has ranged from 0.003 to 0.025 grams per minute across the varying concentrations. Preliminary results have indicated some interesting trends regarding solution composition and vaporization rate. The results obtained from preliminary experiments will be used in conjunction with future experiments to determine the viability of nanochannels to be used in the small satellite propulsion system.
机译:微机电系统(MEMS)和纳米机电系统(NEMS)产生了用于在微米/纳米规模上制造新设备的思想和技术。纳米/微微卫星的定向能力有限,部分原因是微型推力器设备的当前状态。自给自足的微推进系统的开发将使微微和纳米级卫星的动态轨道操纵成为可能。尚未研究通过纳米通道将流体汽化为真空的行为,其局限性是未知的,但它可以为小型卫星提供一种新颖的推进方法。但是,溶液的性质在汽化过程中是短暂的,这会影响流体的流动。因此,已经设计了实验来测量溶液性质,包括密度,蒸发速率和蒸发压力。设计了一套装置来监控真空室内的溶液质量和体积。溶液的蒸发受真空压力,毛细管直径,溶液温度和溶液浓度的影响。当保持在溶液蒸气压下时,在不同浓度下的蒸发速率范围为每分钟0.003至0.025克。初步结果表明了有关溶液组成和汽化速率的一些有趣趋势。从初步实验中获得的结果将与未来的实验结合使用,以确定在小型卫星推进系统中使用的纳米通道的可行性。

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