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NOFBX single stage to Orbit Mars Ascent Vehicle

机译:NOFBX单级到轨道火星上升车辆

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Nitrous Oxide Fuel Blend (NOFBX) is a nitrous-oxide-based mono-propulsion technology developed specifically for a Mars Ascent Vehicle (MAV) application by Firestar Technologies, largely funded by the NASA Mars Program Office, NASA Small Business Innovation Research (SBIR), and NASA International Space Station (ISS). The resulting propellant and engine technology offers significant benefits over previously contemplated solid and storable liquid propulsion solutions that have been proposed for planetary and in-space missions including a MAV, enabling a Single State to Orbit (SSTO) ascent vehicle for Mars Sample Return (MSR). Important characteristics of the technology include specific impulse performance that equals or exceeds state-of-the-art nitrogen textroxide/ monomethyl hydrazine (NTO/MMH) propulsion systems, restartability via spark ignition, deep throttleability (100:1) and high thrust-to-weight ratio. The propellant is completely non-toxic, non-contaminating to the planetary environment and storable over a very wide range of temperatures (<-70°C to >+70°C). Together these attributes offer the potential for dramatic simplification to the MSR program architecture as well as to the MAV itself, increasing margins, eliminating failure modes, improving reliability and decreasing cost. Firestar has demonstrated NOFBX thrusters in the 0.4 N to 445 N (0.1-100 lbf) thrust range, with measured vacuum specific impulse (vIsp) performance of up to ~325 seconds. Innovative Space Propulsion Systems (ISPS) has been formed by Firestar and other strategic partners to commercialize NOFBX technology and will be demonstrating the 445 N (100 lbf) engine and associated feed system components on the ISS in 2013 under a National Lab award from NASA. Also, a current Phase 2 SBIR from NASA will demonstrate the proposed SSTO MAV propulsion module in a series of ground tests. This paper will describe NOFBX&-#x2122; characteristics and applications in greater detail and status of the ISS flight demonstration. The proposed Single Stage to Orbit MAV architecture will then be described with associated performance estimates and benefits to both the MAV itself and the surrounding program architecture. We will show how NOFBX directly addresses and mitigates many of the key technology challenges identified in recent NASA MAV architecture studies.
机译:一氧化二氮混合燃料(NOFBX )是专门针对的Firestar技术火星的Ascent飞行器(MAV)的应用程序开发的一个基于氮氧化物单推进技术,主要是由美国宇航局火星项目办公室,NASA小企业创新研究(SBIR资助),以及美国航空航天局国际空间站(ISS)。得到的推进剂和发动机技术提供显著的好处超过此前预期,已经提出了行星和空间任务,包括MAV固体和可储存液体推进解决方案,使一个国家对轨道(SSTO)上升车辆火星样品返回(MSR )。该技术的重要特性包括等于或超过国家的最先进的氮textroxide /甲基肼(NTO / MMH)推进系统,通过火花点火,深throttleability(100:1)可重启比冲性能和高的推力 - 重量比。该推进剂是完全无毒的,非污染性在很宽的温度范围内进行行星环境和存储的( < - 70 ℃至> + 70 ℃)。总之这些属性提供大幅简化的MSR程序架构以及对MAV自身潜力,提高利润率,消除故障模式,提高可靠性和降低成本。的Firestar已经证明NOFBX 在0.4 N到445 N(0.1 -100磅力)推力范围,可达〜325秒与测量真空比冲(菲斯普)性能推进器。创新的航天推进系统(ISPS)已通过的Firestar等战略合作伙伴形成以商业化NOFBX 技术,并在美国宇航局一个国家实验室的奖项将展示445 N(100磅)的发动机和相关的进料系统部件上的国际空间站在2013年。此外,从美国航空航天局当前的第2阶段SBIR将展示一系列的地面测试所提出的SSTO MAV推进模块。本文将描述NOFBX& - #x2122;特性和更详细和国际空间站飞行表演的地位的申请。建议单身级入轨MAV架构随后将与相关的性能估计和效益两个MAV本身和周围的程序架构描述。我们将展示NOFBX 许多在最近NASA MAV结构研究中确定的主要技术挑战直接解决和减轻如何。

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