A Compound Droplet Undergoing Thermocapillary Migration Passing Through a Constricted Tube

In this paper, we numerically investigate the dynamics of a compound droplet driven by surface tension variation induced by a thermal gradient in a sinusoidal constriction tube. Initially, the compound droplet with a concentric inner core is spherical and placed in the constriction's upstream r...

Mô tả chi tiết

Lưu vào:
Hiển thị chi tiết
Tác giả chính: Vinh, Nguyen, Truong, Van, Phan, Nguyen, Hoe, Nguyen, Binh, Pham, Hung, Vu
Định dạng: Bài trích
Ngôn ngữ:English
Nhà xuất bản: The American Society of Mechanical Engineers 2022
Chủ đề:
Truy cập trực tuyến:https://asmedigitalcollection.asme.org/fluidsengineering/article-abstract/doi/10.1115/1.4054229/1139884/A-Compound-Droplet-Undergoing-Thermocapillary?redirectedFrom=fulltext
https://dlib.phenikaa-uni.edu.vn/handle/PNK/5779
https://doi.org/10.1115/1.4054229
Từ khóa: Thêm từ khóa
Không có từ khóa, Hãy là người đầu tiên đánh dấu biểu ghi này!
Mô tả
Tóm tắt:In this paper, we numerically investigate the dynamics of a compound droplet driven by surface tension variation induced by a thermal gradient in a sinusoidal constriction tube. Initially, the compound droplet with a concentric inner core is spherical and placed in the constriction's upstream region with a low temperature. As time progresses, it migrates to the downstream with a high temperature. Due to the constriction, the droplet is slowed down in the upstream region and accelerated again right after passing the constriction. This acceleration maximizes the eccentricity. However, the constriction results in an increase in the maximum eccentricity when increasing its depth to a value corresponding to the size of the tube neck, which is greater than or equal to the droplet size. Effects of various parameters, e.g., the Marangoni number Ma, the capillary number Ca and the radius ratio Rio, are studied. It is found out that increasing the Ma number or decreasing the Ca number reduces the maximum eccentricity and prolongs the travel time, i.e., the arrival time, from the upstream to the downstream. Similar reduction in the maximum eccentricity also occurs with the increased Rio ratio. Effects of these parameters on the migration velocity are also revealed