首页> 外文会议>International Conference on Environmental Systems >Optimizing a plant habitat for space: A novel approach to plant growth on the Moon
【24h】

Optimizing a plant habitat for space: A novel approach to plant growth on the Moon

机译:优化空间植物栖息地:一种新的植物生长探讨月球

获取原文

摘要

Viability of bioregeneration for life support - providing food, water and air - on long-duration missions depends critically on cost of the plant habitat and on plant productivity in this habitat. Previous estimates, e.g., Drysdale and Wheeler, 2002 of both cost and productivity have been made using existing chamber designs, in particular the BIO-Plex (Bioregenerative Planetary Life Support Systems Test Complex) Plant Growth System intermediate design review (IDR) design. However, this design was developed for a terrestrial testbed, and is not optimized for use in space, much less for a particular space environment. Nor has productivity been determined experimentally for this configuration. We have examined this design and updated it for use on the Moon, with 709-hr days (light/dark cycles), using both natural and artificial light. Each system within the plant habitat was evaluated and modified to some extent for the desired use. Plant productivity was estimated for the expected conditions. Cost impact was calculated using equivalent system mass (ESM). Major improvements are likely by using natural sunlight during the Lunar day and a reduced level of artificial light during the Lunar night.
机译:生命的生存能力 - 为食物,水和空气提供了长期任务,统治着植物栖息地的成本以及这种栖息地的植物生产力。以前的估计,例如,使用现有的室设计,特别是生物plex(生物根行星寿命支持系统测试复杂)植物生长系统中间设计评审(IDR)设计已经进行了成本和生产率的普通和生产力。然而,这种设计是为陆地测试的开发,并且在空间中未经过优化,对于特定的空间环境而言,更小。对于这种配置,实验不确定生产力也没有生产力。我们已经审查了这种设计并更新了它在月球上使用,使用自然和人造光线709小时(轻/暗循环)。在某种程度上评估植物栖息地内的每个系统,以便所需的使用。估计预期条件的植物生产率。使用等效系统质量(ESM)计算成本影响。在农历日期间使用自然阳光,可能在农历夜晚减少的人造光水平的主要改进。

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