Publication

Journal

Enhancing mixing performance in a rotating disk mixing chamber: a quantitative investigation of the effect of Euler and Coriolis forces

페이지 정보

profile_image
작성자 관리자
조회 387회 작성일 25-05-08 16:12

본문

Journal Micromachines (IF=3.5, top 38.9% in instruments & instrumentation)
Name Jihyeong Lee, Saebom Lee, Minki Lee, Ritesh Prakash, Hyejeong Kim, Gyoujin Cho *, Jinkee Lee *
Year 2022

9e44de923e656d8aa6d2907ca0c4532c_1750384167_8265.png

Lab-on-a-CD (LOCD) is gaining importance as a diagnostic platform due to being low-cost, easy-to-use, and portable. During LOCD usage, mixing and reaction are two processes that play an essential role in biochemical applications such as point-of-care diagnosis. In this paper, we numerically and experimentally investigate the effects of the Coriolis and Euler forces in the mixing chamber during the acceleration and deceleration of a rotating disk. The mixing performance is investigated under various conditions that have not been reported, such as rotational condition, chamber aspect ratio at a constant volume, and obstacle arrangement in the chamber. During disk acceleration and deceleration, the Euler force difference in the radial direction causes rotating flows, while the Coriolis force induces perpendicular vortices. Increasing the maximum rotational velocity improves the maximum rotational displacement, resulting in better mixing performance. A longer rotational period increases the interfacial area between solutions and enhances mixing. Mixing performance also improves when there is a substantial difference between Euler forces at the inner and outer radii. Furthermore, adding obstacles in the angular direction also passively promotes or inhibits mixing by configuration. This quantitative investigation provides valuable information for designing and developing high throughput and multiplexed point-of-care LOCDs.

Total 37건 1 페이지
Journal 목록
No. 제목
37

Water Research (IF=12.4, top 1.1% in water resources)

2025

Public attentions from  KU News, asiae, asiatime, industrynews, Kfenews, newsis, mail, edu donga

25.11.04 167
Link
36

npj Clean Water (IF=11.4, top 1.9% in water resources)

2025

Public attentions from  AZO Clean Tech

25.06.02 913
Link
35

Lab on a Chip (IF=5.4, top 8.7% in biochemical research methods)

2025

25.05.08 658
Link
34

Lab on a Chip (IF=5.4, top 8.7% in biochemical research methods)

2025

25.05.08 1509
Link
33

Fundamental Research (IF=6.3, top 12.1% in multidisciplinary sciences)

2025

25.05.08 439
Link
32

Separation and Purification Technology (IF=9.0, top 8.8% in engineering, chemica…

2025

25.05.08 427
Link
31

Chemosphere (IF=8.1, top 7.8% in environmental sciences)

2024

25.05.08 404
Link
30

Chemical Engineering Science (IF=4.1, top 25.7% in engineering, chemical)

2023

25.05.08 363
Link
29

Langmuir (IF=3.9, top 41.3% in chemistry, multidisciplinary)

2023

25.05.08 358
Link
28

Chemical Engineering Journal (IF=15.1, top 3.2% in engineering, chemical)

2023

25.05.08 345
Link
27

Journal of the Korean Society of Visualization

2022

25.05.08 347
Link
26

npj Clean Water (IF=12.19, top 1.5% in water resources)

2022

25.05.08 323
Link
25

ACS Applied Energy Materials (IF=6.9, top 24.7% in materials science, multidisc…

2022

25.05.08 358
Link
열람중 Link
23

Journal of Visualization (IF=1.9, top 66.1% in Imaging science & photographic te…

2022

25.05.08 291
Link

검색