彭文波, 张诗, 李志印, 等. 回收液氧冷量冻结清除二氧化碳实现AIP潜艇节能增效[J]. 中国舰船研究, 2024, 19(X): 1–7. DOI: 10.19693/j.issn.1673-3185.03447
引用本文: 彭文波, 张诗, 李志印, 等. 回收液氧冷量冻结清除二氧化碳实现AIP潜艇节能增效[J]. 中国舰船研究, 2024, 19(X): 1–7. DOI: 10.19693/j.issn.1673-3185.03447
PENG W B, ZHANG S, LI Z Y, et al. Recall cold energy of liquid oxygen to clear carbon dioxide for AIP submarine[J]. Chinese Journal of Ship Research, 2024, 19(X): 1–7 (in Chinese). DOI: 10.19693/j.issn.1673-3185.03447
Citation: PENG W B, ZHANG S, LI Z Y, et al. Recall cold energy of liquid oxygen to clear carbon dioxide for AIP submarine[J]. Chinese Journal of Ship Research, 2024, 19(X): 1–7 (in Chinese). DOI: 10.19693/j.issn.1673-3185.03447

回收液氧冷量冻结清除二氧化碳实现AIP潜艇节能增效

Recall cold energy of liquid oxygen to clear carbon dioxide for AIP submarine

  • 摘要:
    目的 AIP潜艇携带巨量液氧,在液氧消耗过程中冷量往往未被充分利用,而潜艇密闭空间二氧化碳清除方式存在诟病。针对长期困扰AIP潜艇的两大痛点,本文提出了将AIP潜艇液氧冷量回收利用与潜艇二氧化碳清除两者有机结合的一体化的解决方案。
    方法 将液氧作为冷源处理舱室空气,依据空气各组分相变点温度不同特性,在常压下将空气中二氧化碳冻结(凝华)分离出来。
    结果 本文通过数据量化分析,论证了在潜艇自持力范围内液氧储存的能量基本上能满足冻结艇员呼吸代谢产生的二氧化碳对冷量的需求,并提出了三级工作流程与实施方案。
    结论 本论文提出的技术方案,可回收利用占比5%的低温冷量,是一种符合综合集成、节能降噪和总体资源充分融合思想的解决方案,可用于以AIP系统作动力的潜艇、潜器和深海空间站等密闭空间的空气净化和二氧化碳清除。

     

    Abstract:
    Objective Air-independent propulsion (AIP) submarines carry huge quantities of liquid oxygen. However, in the liquid oxygen combustion process, the cold energy is not usually recovered, and there are criticisms concerning CO2 removal in the confined space of a submarine. Aiming at the two major pain points that have long plagued AIP submarines, this paper proposes an integrated solution that organically combines the recovery and utilization of cold energy from liquid oxygen with the removal of CO2 .
    Method  Liquid oxygen can be used as a cold energy source to process the cabin air. According to the different phase transition temperature characteristics of each air component, the CO2 in the air is frozen (condensed) and separated under normal pressure.
    Results This study uses quantitative data analysis to show that the energy stored in liquid oxygen can basically meet the cold energy demand for freezing the CO2 produced by the crew's respiratory metabolism within the self-sustaining capacity of the submarine, and proposes a three-level workflow and implementation plan.
    Conclusion The technical solution proposed in this paper can recycle 5% of cold energy from liquid oxygen, which conforms to the idea of the comprehensive integration of energy saving and noise reduction, and the full integration of overall resources. As such, it can be used for air purification and CO2 removal in confined spaces such as submarines, submersibles and deep-sea space stations powered by AIP systems.

     

/

返回文章
返回