首页> 外文期刊>Building and Environment >Accumulation and spatial distribution of CO_2 in the astronaut's crew quarters on the International Space Station
【24h】

Accumulation and spatial distribution of CO_2 in the astronaut's crew quarters on the International Space Station

机译:国际空间站宇航员船员宿舍CO_2的积累与空间分布

获取原文
获取原文并翻译 | 示例
           

摘要

In poorly ventilated confined spaces, assessing the accumulation of CO2 in the breathing zone (BZ) is important evaluating human safety. The current study presents an experimental and numerical investigation of the CO2 generation rate and spatial distribution in the crew quarters (CQ) of the International Space Station. In microgravity, density-difference based airflow is nonexistent, and CO2 accumulates around the astronaut's head if the BZ is poorly or not at all ventilated. The aim is to study the breath's influence on CO2 spatial distribution in order to circumscribe the region that needs to be ventilated in the CQ. An experimental setup was used to measure the CO2 generation rate of several test subjects on Earth in a non-ventilated full-scale model of the CQ. The experimental CO2 results were used to validate CFD simulations of the CQ with gravity, with a human model inside featuring a full respiratory cycle. The validated CFD model was then used without gravity for a CO2 accumulation study. The respiratory cycle was analyzed in order to propose a rigorous definition of the BZ based on a frequency analysis of the breath. Results show that CO2 concentrations in the identified BZ are greater in the absence of gravity compared to a similar situation with gravity. It is believed that the ventilation system presently in place in the CQ does not effectively ventilate this strategic area, therefore a personalized ventilation type solution should be studied in the future.
机译:在通风良好的受限空间中,评估呼吸区(BZ)中CO2的积累是重要的评估人类安全性。目前的研究提出了国际空间站的船员宿舍(CQ)中的二氧化碳生成率和空间分布的实验和数值研究。在微再生中,基于密度差异的气流是不存在的,如果BZ很差或者在所有通风中,CO2累积在宇航员的头部周围。目的是研究呼吸对二氧化碳空间分布的影响,以便在CQ中围绕需要通风的区域。实验装置用于测量地球上几种测试对象的CO2生成率在CQ的非通风全规模模型中。实验CO 2结果用于验证CQ的CFD模拟,以重力,具有呼吸循环的人体模型。然后使用验证的CFD模型而无需重力进行二氧化碳累积研究。分析了呼吸周期,以便根据呼吸的频率分析提出对BZ的严格定义。结果表明,与具有重力的类似情况相比,所识别的BZ中所识别的BZ中的CO2浓度更大。据信,目前在CQ中的通风系统没有有效地通风这种战略区域,因此应在未来研究个性化通风型解决方案。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号