...
首页> 外文期刊>Journal of the British Interplanetary Society >NUMERICAL CONSTRAINTS ON THE SIZE OF GENERATION SHIPS from total energy expenditure on board, annual food production and space farming techniques
【24h】

NUMERICAL CONSTRAINTS ON THE SIZE OF GENERATION SHIPS from total energy expenditure on board, annual food production and space farming techniques

机译:船上总能源消耗,年度粮食生产和太空耕作技术对发电船舶尺寸的数值约束

获取原文
获取原文并翻译 | 示例

摘要

In the first papers of our series on interstellar generation ships we have demonstrated that the numerical code HERITAGE is able to calculate the success rate of multi-generational space missions. Thanks to the social and breeding constraints we examined, a multi-generational crew can safely reach an exoplanet after centuries of deep space travel without risks of consanguinity or genetic disorders. We now turn to addressing an equally important question : how to feed the crew? Dried food stocks are not a viable option due to the deterioration of vitamins with time and the tremendous quantities that would be required for long-term storage. The best option relies on farming aboard the spaceship. Using an updated version of HERITAGE that now accounts for age-dependent biological characteristics such as height and weight, and features related to the varying number of colonists, such as infertility, pregnancy and miscarriage rates, we can estimate the annual caloric requirements aboard using the Harris-Benedict principle. By comparing those numbers with conventional and modern farming techniques we are able to predict the size of artificial land to be allocated in the vessel for agricultural purposes. We find that, for an heterogeneous crew of 500 people living on an omnivorous, balanced diet, 0.45 km2 of artificial land would suffice in order to grow all the necessary food using a combination of aeroponics (for fruits, vegetables, starch, sugar, and oil) and conventional farming (for meat, fish, dairy, and honey).
机译:在有关星际一代飞船的系列文章的第一篇中,我们证明了数字HERITAGE能够计算多代太空任务的成功率。由于我们研究了社会和繁殖方面的限制,经过几百年的深空旅行,多代机组人员可以安全地到达系外行星,而不会造成血统或遗传疾病的风险。现在我们来解决一个同样重要的问题:如何养活机组人员?干粮储备不是可行的选择,因为维生素会随着时间的流逝而变质,并且长期储存需要大量的维生素。最好的选择是依靠在飞船上耕种。使用现在的HERITAGE更新版本,可以说明年龄相关的生物学特征(例如身高和体重)以及与殖民者数量变化相关的特征(例如不育,怀孕和流产率),我们可以使用以下方法估算每年的热量需求哈里斯-本尼迪克特原理。通过将这些数字与传统和现代农业技术进行比较,我们可以预测要在船上分配用于农业目的的人工土地的大小。我们发现,对于500名杂食性,杂食性均衡饮食的工作人员而言,0.45平方公里的人工土地就足够了,以便使用航空电子设备(包括水果,蔬菜,淀粉,糖和石油)和常规农业(用于肉,鱼,奶制品和蜂蜜)。

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