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International Space Station Crew Quarters Ventilation and Acoustic Design Implementation

机译:国际空间站机组人员通风和声学设计实施

摘要

The International Space Station (ISS) United States Operational Segment has four permanent rack sized ISS Crew Quarters (CQs) providing a private crew member space. The CQs use Node 2 cabin air for ventilation/thermal cooling, as opposed to conditioned ducted air-from the ISS Common Cabin Air Assembly (CCAA) or the ISS fluid cooling loop. Consequently, CQ can only increase the air flow rate to reduce the temperature delta between the cabin and the CQ interior. However, increasing airflow causes increased acoustic noise so efficient airflow distribution is an important design parameter. The CQ utilized a two fan push-pull configuration to ensure fresh air at the crew member's head position and reduce acoustic exposure. The CQ ventilation ducts are conduits to the louder Node 2 cabin aisle way which required significant acoustic mitigation controls. The CQ interior needs to be below noise criteria curve 40 (NC-40). The design implementation of the CQ ventilation system and acoustic mitigation are very inter-related and require consideration of crew comfort balanced with use of interior habitable volume, accommodation of fan failures, and possible crew uses that impact ventilation and acoustic performance. Each CQ required 13% of its total volume and approximately 6% of its total mass to reduce acoustic noise. This paper illustrates the types of model analysis, assumptions, vehicle interactions, and trade-offs required for CQ ventilation and acoustics. Additionally, on-orbit ventilation system performance and initial crew feedback is presented. This approach is applicable to any private enclosed space that the crew will occupy.
机译:国际空间站(ISS)美国运营部有四个固定的机架大小的ISS乘员宿舍(CQ),可为私人机组人员提供空间。与来自ISS通用机舱空气总成(CCAA)或ISS流体冷却回路的调节风管空气相比,CQ使用节点2机舱空气进行通风/热力冷却。因此,CQ只能增加空气流量,以减小机舱与CQ内部之间的温度差。但是,增加的气流会导致声音增大,因此有效的气流分配是重要的设计参数。 CQ采用了两个风扇推挽式配置,以确保机组人员头部位置处的新鲜空气并减少噪音。 CQ通风管道是通向较大的Node 2机舱过道的导管,需要大量的声学缓解控制。 CQ内部需要低于噪声标准曲线40(NC-40)。 CQ通风系统的设计实施与消音之间的联系非常紧密,需要考虑到机组舒适性与内部居住空间的使用,风扇故障的容纳以及可能影响通风和声学性能的机组使用之间的平衡。每个CQ都需要其总体积的13%和其总质量的6%,以减少声音噪声。本文说明了模型分析的类型,假设,车辆相互作用以及CQ通风和声学所需的权衡。此外,还介绍了在轨通风系统的性能和机组人员的初始反馈。这种方法适用于机组人员将要占用的任何私人封闭空间。

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