新澳门中特网站合法吗,二四六天天好(944cc)46天彩,彩色港彩全年历史图库,2025天天开好彩免费大全,2025正版跑狗图

Vortex rings could cut water consumption in process industry

08 Aug,2024

4.png

Vortex rings, a naturally-occurring phenomenon seen in fluids, could be harnessed to reduce water consumption in process industry cleaning systems says R&D consultancy Sagentia Innovation.  With water preservation now a major sustainability concern, the consultancy has been investigating ways to address water consumption in clean-in-place (CIP) systems. Initial analysis identified the rinse phase following wash cycles as an opportunity to innovate, and it was determined that vortex rings hold high potential for certain applications.  A vortex ring is a torus (‘doughnut-shaped’) fluid structure which travels forward by rotating within itself. From a physics perspective, this is because the velocity field is smaller towards the centre of the torus and greater towards the edge. Conversely, the flow of liquid through a pipe is typically faster in the centre and slower towards the walls. This is the opposite of what is required to draw cleaning product residue into the bulk flow and out of the system. So, CIP systems require high flow speeds to induce turbulence to improve mixing, which results in large quantities of water being used.  A team of scientists and engineers at Sagentia Innovation investigated how vortex rings might enable equivalent rinsing action at lower overall speeds, ultimately reducing total water consumption. Coco Day, Science and Technology Consultant, explains that the team modelled vortex ring behaviour in a pipe on a scale used in the food and beverage industry.  “Our hypothesis was that a vortex ring travelling down a pipe would induce mixing, entraining fluid from the near-wall region into the central part of the tube. If true, a simple vortex generation device, such as a piston, could be very effective in reducing CIP water consumption without compromising rinse phase performance.  “However, while recent academic research characterises the form and motion of vortex rings, very little work has been done on their behaviour in pipes, and even less in pipes which contain a background flow. Our findings to date suggest that vortex rings can indeed survive, and in fact move further, in a laminar background flow. This finding is very encouraging, and we are now exploring vortex rings’ behaviour within faster-flowing turbulent media. Vortex rings could represent a rich new seam of innovation and product development for CIP systems.”

Contact Us

Address:Room 1306, Building 7, Xingguang International Financial Center, Development Zone, Liaocheng City
Tel:0635-8263099
        0635-8262099
Email:admin@aglzc.cn

Online Inquiry
Company Name*
Name*
Phone*
E-mail*
Message
Copyright ? 2018 - Shandong Ao Gang Lian Bearing Co., Ltd. Technical Support - Bearing.cn ICP:鲁ICP备19054627号-1
主站蜘蛛池模板: 2024新奥资料大全| 2022年有哪些国际体育赛事| 每期必中30码| 2021澳门正版资料免费下载| 9420高清免费观看在线大全| 澳门4777777开奖资料| 澳门会传真资料免费| 2024新澳门官方网站下载| 118澳门码开奖| 八月体育赛事| 澳门最准资料免费网址| 全网免会员的追剧app| 澳门开彩开奖+结果2023澳门最新 2024澳彩管家婆资料传真开奖新澳今晚井奖 | 澳门码历史开奖结果记录 | 新澳门跑狗图2024年| 中文字幕电视剧在线| 新奥码开奖结果查询| 308kcm每期玄机资料下载百度| 新澳今天的消息是什么| 888影视网电影迅雷| 949韩国理伦电影| 九七电影网观看| 98版哥斯拉高清在线观看| 午夜dj大全高清在线| 澳门开奖结果十2020开奖记录| 新澳门规律公式| 通天论坛59219.cσm查询澳| 黎明之前电视剧在哪个视频看| 卫生间的圣母像| 澳门王中王100%资料2024| 澳门四肖八码期期准免费精准| 香港开奖结果开奖记录特色| 我只需要你电视剧在线观看| 232385.cσm查询澳彩146期开奖结果| 南风知我意免费观看电视剧全集星辰影院| 星辰影院电影在线观看完整免费| 老妇人与死神中文配音版| 2024澳门新资料大全免费周| 第一滴血4国语版高清免费| 港澳台中特www| 新澳门精准资料大全管家婆料图片 |