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Supersonically spray-coated copper meshes as textured surfaces for pool boiling
- Jo, Hong Seok;
- Kim, Min-Woo;
- Kim, Tae Gun;
- An, Seongpil;
- Park, Hyun-Goo;
- ... Yoon, Sam S.;
- 외 3명
WEB OF SCIENCE
45SCOPUS
50초록
Pool boiling is a process through which heat is removed upon the vaporization of a coolant fluid surrounding a heated surface and is often applied for cooling high-performance computing systems and nuclear reactors. Increasing the surface-to-volume ratio in confined spaces enhances this cooling method. Here, we introduce textured copper pillars with various geometric arrangements and study their effects on the pool-boiling performance. Frustum pyramids were formed by supersonic spraying copper microparticles through a wire mesh to form pillars of various sizes. We identified an optimal pyramid-base size of 0.91 mm on each side corresponding to the maximum heat transfer coefficient, critical heat flux, boiling heat transfer, and cross-flow coolant velocity over the pyramids. Maximum bubble nucleation was also achieved using this specific geometric arrangement. Such a geometric design can be installed in heat pipe cooling systems to cool electronic devices and nuclear reactors.
키워드
- 제목
- Supersonically spray-coated copper meshes as textured surfaces for pool boiling
- 저자
- Jo, Hong Seok; Kim, Min-Woo; Kim, Tae Gun; An, Seongpil; Park, Hyun-Goo; Lee, Jong-Gun; James, Scott C.; Choi, Jeehoon; Yoon, Sam S.
- 발행일
- 2018-10
- 유형
- Article
- 권
- 132
- 페이지
- 26 ~ 33