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Multi-User Hardware Solutions to Combustion Science ISS Research

机译:燃烧科学ISS研究的多用户硬件解决方案

摘要

In response to the budget environment and to expand on the International Space Station (ISS) Fluids and Combustion Facility (FCF) Combustion Integrated Rack (CIR), common hardware approach, the NASA Combustion Science Program shifted focus in 1999 from single investigator PI (Principal Investigator)-specific hardware to multi-user 'Minifacilities'. These mini-facilities would take the CIR common hardware philosophy to the next level. The approach that was developed re-arranged all the investigations in the program into sub-fields of research. Then common requirements within these subfields were used to develop a common system that would then be complemented by a few PI-specific components. The sub-fields of research selected were droplet combustion, solids and fire safety, and gaseous fuels. From these research areas three mini-facilities have sprung: the Multi-user Droplet Combustion Apparatus (MDCA) for droplet research, Flow Enclosure for Novel Investigations in Combustion of Solids (FEANICS) for solids and fire safety, and the Multi-user Gaseous Fuels Apparatus (MGFA) for gaseous fuels. These mini-facilities will develop common Chamber Insert Assemblies (CIA) and diagnostics for the respective investigators complementing the capability provided by CIR. Presently there are four investigators for MDCA, six for FEANICS, and four for MGFA. The goal of these multi-user facilities is to drive the cost per PI down after the initial development investment is made. Each of these mini-facilities will become a fixture of future Combustion Science NASA Research Announcements (NRAs), enabling investigators to propose against an existing capability. Additionally, an investigation is provided the opportunity to enhance the existing capability to bridge the gap between the capability and their specific science requirements. This multi-user development approach will enable the Combustion Science Program to drive cost per investigation down while drastically reducing the time required to go from selection to space flight.
机译:为了应对预算环境并扩展国际空间站(ISS)的流体和燃烧设施(FCF)燃烧综合机架(CIR),通用硬件方法,NASA燃烧科学计划于1999年将重点从单一研究人员PI(首席研究人员专用的硬件,用于多用户“小型设备”。这些微型设备将使CIR通用硬件理念更上一​​层楼。所开发的方法将程序中的所有调查重新安排到子研究领域。然后,使用这些子字段中的通用需求来开发通用系统,然后再添加一些特定于PI的组件。选择的研究子领域是液滴燃烧,固体和消防安全以及气态燃料。从这些研究领域涌现出三个微型设备:用于液滴研究的多用户液滴燃烧装置(MDCA),用于固体和消防安全的新型固体燃烧研究(FEANICS)的流量罩以及多用户气体燃料气态燃料的设备(MGFA)。这些微型设备将为各个研究人员开发通用的腔室插入组件(CIA)和诊断程序,以补充CIR提供的功能。目前,MDCA的研究人员为4名,FEANICS的研究人员为6名,MGFA的研究人员为4名。这些多用户设施的目标是在进行初始开发投资后降低每个PI的成本。这些微型设备中的每一个都将成为未来《燃烧科学》美国国家航空航天局研究公告(NRA)的固定内容,使研究人员能够针对现有功能提出建议。此外,还为进行研究提供了机会,以增强现有能力,以弥合能力与其具体科学要求之间的差距。这种多用户开发方法将使燃烧科学计划能够降低每次调查的成本,同时大大减少从选择到太空飞行所需的时间。

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    Otero Angel M.;

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