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On the convective thermal performance of a CPU cooler working with liquid gallium and CuO/water nanofluid: A comparative study.
IIR document
Parametric analysis on magnetoresistive heat switch – numerical Study.
Thermal cooling multichip ultra high power LED using refrigeration cycle system.
Two-phase jet impingement cooling for high heat flux wide band-gap devices using multi-scale porous surfaces.
A permanent magnet magneto-refrigerator study on using Gd/Gd-Si-Ge/Gd-Si-Ge-Ga alloys.
The prototype of an effective device for magnetic refrigeration.
Magnetic hysteresis and refrigeration capacity of Ni-Mn-Ga alloys on heating and cooling processes.
Histéresis magnética y capacidad de refrigeración de aleaciones de Ni-Mn-Ga en procesos de calentamiento y enfriamiento.
Theoretical description of magnetocaloric effect in Ni-Mn-Ga alloys.
Comparing magnetocaloric properties of substrate-constrained and freestanding epitaxial Ni-Mn-Ga-Co films.
Magnetocaloric effect in Gd-doped Ni-Cu-Mn-Ga alloy.
Giant magnetocaloric effect in Ni-Mn-Ga ferromagnetic shape memory thin films.
Monte Carlo simulations of magnetocaloric effect of Heusler shape memory Ni-Mn-Ga alloys.
Magnetocaloric effect in Ni-Mn-Ga Heusler alloys.
Refrigeration sector monitoring
2 results
Cooling computer chips by laser light for improved performance and energy efficiency
A US-based research consortium is working on developing a laser-based photonic cooling technology to both improve computer processor performance and either replace or complement water- and air- based cooling...
Optical cavity cooling: a quantic leap for optical refrigeration?
A team of researchers at the Niels Bohr Institute have combined laser cooling technology with nano-physics, and have discovered a revolutionary way of bringing a semi-conductor nano-membrane’s temperature down to -269°C.