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首页> 外文期刊>Journal of the British Interplanetary Society >WATER AND AIR CONSUMPTION ABOARD INTERSTELLAR ARKS
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WATER AND AIR CONSUMPTION ABOARD INTERSTELLAR ARKS

机译:乘坐水域和空气消费

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摘要

The architecture of a large interstellar spaceship, which is capable of serving as a living environment for a population over many generations, is mainly dictated by the needs of said population in terms of food, water and breathable gases. These resources cannot be stored for the entire duration of a journey that goes on for several centuries, so they must be produced in situ. In order to determine the quantities necessary for the survival of the population, it is imperative to precisely estimate their needs. In this article, we focus on accurate simulations of the water and air (oxygen) requirements for any type of population in order to be able to provide precise constraints on the overall architecture of an interstellar ark (the requirements in terms of food having already been studied in a previous publication). We upgrade our agent-based, numerical, Monte Carlo code HERITAGE to include human physiological needs. Our simulations show that, for a crew of about 1100 crew members (each characterized with individual anthropometric and biological data), 1.8 ⅹ 10~8 litres of oxygen are annually required, together with 1.1 ⅹ 10~6 litres of water. Those results do not account for oxygen and water used in growing plants, but they give us an insight of how much resources are needed in the spaceship. We also review the best methods for generating water from waste gases (namely carbon dioxide and dihydrogen) and how such systems could complement the oxygen-supplying biospheres inside multi-generational spaceships to form a closed and controlled environment.
机译:大型星际宇宙飞船的建筑能够作为许多世代人口的生活环境,主要是在食品,水和透气气体方面的需求所示。这些资源无法存储在几个世纪以来的旅程的整个持续时间内,因此必须原位生产。为了确定人口生存所需的数量,必须精确估计其需求。在本文中,我们专注于任何类型的人口的水和空气(氧气)要求的准确模拟,以便能够为壁炉架方舟的整体架构提供精确的限制(已经存在的食物方面的要求在以前的出版物中研究)。我们升级我们的代理商,数值蒙特卡罗代码遗产,包括人类生理需求。我们的模拟表明,对于大约1100名机组成员的船员(每个人的组织物质和生物数据为特征),每年需要1.8‰10〜8升氧,以及1.1℃10〜6升水。这些结果不考虑在种植植物中使用的氧气和水,但它们让我们了解宇宙飞船中需要多少资源。我们还审查了从废气(即二氧化碳和二氢)产生水的最佳方法以及这种系统如何补充多世代宇宙飞船内的氧气供应生物炉,以形成封闭和受控的环境。

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