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用于公共和偏远地区冠状病毒预防的太阳能消毒隧道喷雾系统的实验分析

Experimental analysis of solar powered disinfection tunnel mist spray system for coronavirus prevention in public and remote places.

作者信息

Khan Osama, Khan Mohd Zaheen, Khan M Emran, Goyal Alok, Bhatt Bhupendra Kumar, Khan Amaanullah, Parvez Mohd

机构信息

Jamia Millia Islamia, New Delhi, India.

Al- Falah University, Faridabad, Haryana, India.

出版信息

Mater Today Proc. 2021;46:6852-6858. doi: 10.1016/j.matpr.2021.04.440. Epub 2021 May 6.

Abstract

There is a pressing need to accelerate the development of advanced technologies to prevent Coronavirus in large gatherings. The present system is an integration of tunnel disinfectant spray system and solar setup which utilises the solar energy to power a pump which pushes the required amount of chemical mixture into the nozzles of the spray system in order to eliminate any incoming virus or bacteria on the clothes of a particular person without wetting it. Data was gathered for a mall in New Delhi related to occupancy levels before and after lockdown. A 47% and 35% spike in energy and disinfectant mixture to pump was evaluated on weekends. A 70% reduction in operating cost was registered for solar based system in comparison to non-solar setup. Optimum conditions by considering efficiency and cost effectiveness evaluated are 8 number of nozzles, nozzle angle 55 degrees spray pressure 200 bar, and pressure 200 bar.

摘要

迫切需要加速先进技术的开发,以在大型聚集中预防冠状病毒。目前的系统是隧道消毒剂喷雾系统和太阳能装置的集成,该装置利用太阳能为泵提供动力,该泵将所需量的化学混合物推送到喷雾系统的喷嘴中,以便在不弄湿衣服的情况下消除特定人员衣服上任何传入的病毒或细菌。收集了新德里一家商场在封锁前后的 occupancy levels 相关数据。周末评估发现,泵的能源和消毒剂混合物分别激增了 47% 和 35%。与非太阳能装置相比,基于太阳能的系统运营成本降低了 70%。通过考虑效率和成本效益评估得出的最佳条件是 8 个喷嘴、喷嘴角度 55 度、喷雾压力 200 巴和压力 200 巴。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee9c/8101865/d1bcbe1b5bdc/gr1_lrg.jpg

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