Litcius/Paper detail

Investigation to Improve the Pool Boiling Heat Transfer Characteristics Using Laser-Textured Copper-Grooved Surfaces

Dharmendra Mani, S. Suresh, Hafız Muhammad Ali, Udaya Kumar Ganesan

2020International Journal of Photoenergy28 citationsDOIOpen Access PDF

Abstract

Improving the performance of pool boiling with critical heat flux of pool boiling and enhancing the coefficient of heat transfer through surface modification technique have gained a lot of attention. These surface modifications can be done at different scales using various techniques. However, along with the performance improvement, the durability and stability of the surface modification are very crucial. Laser machining is an attractive option in this aspect and is gaining a lot of attention. In the present experimentation research work, pool boiling attributed performance of copper-grooved surfaces obtained through picosecond laser machining method is investigated. The performance of the modified surfaces was compared with the plain surface serving as reference. In this, three square grooved patterns with the same pitch (100 μ m) and width (100 μ m) but different depths (30, 70, and 100 μ m) were investigated. Different depths were obtained by varying the scanning speed of the laser machine. In addition to the microchannel effect, the grain structuring during the laser machining process creates additional nucleation sites which has proven its effectiveness in improving the pool boiling performance. In all aspects, the pool boiling performance of the grooved laser-textured surface has showed increased surface characterisation as compared with the surface of copper.

Topics & Concepts

Materials scienceBoilingMachiningHeat transferCopperLaserNucleate boilingMicrochannelHeat fluxComposite materialBoiling heat transferMechanical engineeringMetallurgyOpticsMechanicsNanotechnologyThermodynamicsEngineeringPhysicsHeat Transfer and Boiling StudiesHeat Transfer MechanismsHeat Transfer and Optimization