Advanced cartridge design for a gas respiratory protection system using experiments, CFD simulation and virtual reality

IF 9.7 1区 环境科学与生态学 Q1 ENGINEERING, ENVIRONMENTAL Journal of Cleaner Production Pub Date : 2023-11-10 DOI:10.1016/j.jclepro.2023.139101
Rakyoung Jeon , Shin Hyuk Kim , Kwangjun Ko , Kihyun Kwon , Myungkyu Park , Ireh Seo , Min Oh , Chang-Ha Lee
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Abstract

Gas masks are critical for protection against chemical, biological, radiological, and nuclear materials. Efforts are underway to develop advanced cartridges for next-generation gas respirators in civil-military combined use to improve wearability and protection for users (firefighters, military personnel, and environmental and safety-related workers). Herein, the performance of three newly designed cartridges for a next-generation gas respirator was evaluated using flow analysis, along with adsorption characteristics. The adsorption kinetics of cyclohexane gas on ASC (a copper-silver-hexavalent chromium impregnated activated carbon in the study) was measured by breakthrough experiments in a packed bed, and the obtained parameters were used in the computational fluid dynamics (CFD) model for the designed plate-type cartridges. To apply the physical properties of the adsorbent to the CFD simulation, porous materials were expressed using the granular technique and packed bed technique. The CFD model was verified through a gas adsorption experiment using a prototype cartridge. The respiration resistance and breakthrough time for the filled-adsorbent efficiency and lifespan were compared among the three designed cartridges according to the gas inflow conditions. Additionally, virtual engineering was performed by grafting the CFD results to a virtual reality (VR) system with which 3-dimensional performance visuals of the cartridges could be observed. The developed VR system provides detailed information for cartridge design and optimization. Overall, the developed procedure of virtual engineering can be used to improve CFD simulation results.

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采用实验、CFD仿真和虚拟现实技术,为气体呼吸保护系统设计先进的药筒
防毒面具对于防护化学、生物、放射性和核材料至关重要。正在努力开发用于军民两用的下一代气体呼吸器的先进墨盒,以提高用户(消防员,军事人员以及环境和安全相关工作人员)的可穿戴性和保护。本文利用流动分析和吸附特性对三种新设计的下一代气体呼吸器的性能进行了评估。在填充床上进行了突破性实验,测量了环己烷气体在ASC(铜银六价铬浸染活性炭)上的吸附动力学,并将所得参数用于所设计的板式活性炭筒的计算流体动力学(CFD)模型。为了将吸附剂的物理性质应用于CFD模拟,采用颗粒技术和填充床技术对多孔材料进行了表征。利用原型筒进行了气体吸附实验,验证了CFD模型的正确性。根据不同的入气条件,比较了三种设计的吸附剂的呼吸阻力和突破时间对填充吸附剂效率和寿命的影响。此外,通过将CFD结果嫁接到虚拟现实(VR)系统,可以观察到墨盒的三维性能视觉效果,从而进行虚拟工程。开发的虚拟现实系统为墨盒的设计和优化提供了详细的信息。总的来说,所开发的虚拟工程程序可用于改进CFD仿真结果。
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来源期刊
Journal of Cleaner Production
Journal of Cleaner Production 环境科学-工程:环境
CiteScore
20.40
自引率
9.00%
发文量
4720
审稿时长
111 days
期刊介绍: The Journal of Cleaner Production is an international, transdisciplinary journal that addresses and discusses theoretical and practical Cleaner Production, Environmental, and Sustainability issues. It aims to help societies become more sustainable by focusing on the concept of 'Cleaner Production', which aims at preventing waste production and increasing efficiencies in energy, water, resources, and human capital use. The journal serves as a platform for corporations, governments, education institutions, regions, and societies to engage in discussions and research related to Cleaner Production, environmental, and sustainability practices.
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