首页> 外文会议>International astronautical congress >EXPERIMENTAL INVESTIGATION FOR RELIABLE START-UP OF 5W MICROWAVE ELECTROTHERMAL THRUSTER AS MEANS OF PRIMARY PROPULSION FOR NANO AND SMALL SATELLITES IN REALISTIC SPACE CONDITION
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EXPERIMENTAL INVESTIGATION FOR RELIABLE START-UP OF 5W MICROWAVE ELECTROTHERMAL THRUSTER AS MEANS OF PRIMARY PROPULSION FOR NANO AND SMALL SATELLITES IN REALISTIC SPACE CONDITION

机译:5W微波电热推进器可靠启动的实验研究,作为纳米和小型卫星的初级推进方法

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Microwave Electrothermal Thruster (MET) is one of the derivative of electrothermal propulsion devices. Its characteristics including electrodeless design, long lifetime, and slight plume contamination make it very attractive for future application as means of both primary and secondary propulsion. Making use of the thermal-vacuum experimental system, the factors which influence reliable startup and steady work of low power 5Watt coaxial resonant cavity MET such as propellant kinds including water, coupling probe length, mass flow rate, incident microwave power, position of inner conductor, and sealed material selection of microwave connector were studied. The dependence of MET performance such as thrust, specific impulse and efficiency on the parameters of propellant mass flow rate and incident microwave power are discussed and analyzed. Along with their use on nano/small satellite platform, the effects of plasma non-uniformities are also studied and the results are presented.
机译:微波电热推进器(MET)是电热推进装置的衍生物之一。它的特点包括无电极设计,长寿命和轻微的羽流污染使得将来的应用是非常有吸引力的,因为未来的应用是主要和二次推进的手段。利用热真实实验系统,影响低功率轴同轴共振腔的可靠启动和稳定工作的因素,如推进剂种类,包括水,耦合探针长度,质量流量,入射微波功率,内导体的位置研究了微波连接器的密封材料选择。讨论和分析了符合符合性能的依赖性,例如推进剂质量流量和入射微波功率的参数的推力,特定脉冲和效率。随着它们在纳米/小卫星平台上使用,还研究了血浆不均匀性的影响,并提出了结果。

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