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Rotary Drum Separator and Pump for the Sabatier Carbon Dioxide Reduction System

机译:Sabatier二氧化碳还原系统的转鼓分离器和泵

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摘要

A trade study conducted in 2001 selected a rotary disk separator as the best candidate to meet the requirements for an International Space Station (ISS) Carbon Dioxide Reduction Assembly (CRA). The selected technology must provide micro-gravity gasfliquid separation and pump the liquid from 10 psia at the gasfliquid interface to 18 psia at the wastewater bus storage tank. The rotary disk concept, which has pedigree in other systems currently being built for installation on the ISS, failed to achieve the required pumping head within the allotted power. The separator discussed in this paper is a new design that was tested to determine compliance with performance requirements in the CRA. The drum separator and pump @SP) design is similar to the Oxygen Generator Assembly (OGA) Rotary Separator Accumulator (RSA) in that it has a rotating assembly inside a stationary housing driven by a integral internal motor. The innovation of the DSP is the drum shaped rotating assembly that acts as the accumulator and also pumps the liquid at much less power than its predecessors. In the CRA application, the separator will rotate at slow speed while accumulating water. Once full, the separator will increase speed to generate sufficient head to pump the water to the wastewater bus. A proof-of- concept (POC) separator has been designed, fabricated and tested to assess the separation efficiency and pumping head of the design. This proof-of-concept item was flown aboard the KC135 to evaluate the effectiveness of the separator in a microgravity environment. This separator design has exceeded all of the performance requirements. The next step in the separator development is to integrate it into the Sabatier Carbon Dioxide Reduction System. This will be done with the Sabatier Engineering Development Unit at the Johnson Space Center.
机译:2001年进行的一项贸易研究选择了圆盘分离器作为满足国际空间站(ISS)二氧化碳减排装置(CRA)要求的最佳选择。所选技术必须提供微重力气液分离,并将液体从气液界面处的10 psia泵送到废水总线储罐处的18 psia。旋转盘概念在目前正在安装用于ISS上安装的其他系统中有广泛的应用,但未能在分配的功率内达到所需的扬程。本文讨论的分隔器是经过测试的新设计,以确定是否符合CRA中的性能要求。鼓式分离器和泵的设计类似于氧气发生器组件(OGA)旋转式分离器蓄能器(RSA),因为它在由一体式内部电动机驱动的固定壳体内具有旋转组件。 DSP的创新之处在于鼓形旋转组件,它充当蓄能器,并且以比其前代产品少得多的功率泵送液体。在CRA应用中,分离器将在积水的同时以低速旋转。一旦装满,分离器将提高速度以产生足够的扬程,以将水泵送到废水总线。设计,制造和测试了概念验证(POC)分离器,以评估设计的分离效率和扬程。将该概念验证项目悬挂在KC135上,以评估隔膜在微重力环境下的有效性。此分隔符设计已超出所有性能要求。分离器开发的下一步是将其集成到Sabatier二氧化碳还原系统中。这将由约翰逊航天中心的Sabatier工程开发部门完成。

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