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46 171 records
IIR document
A numerical analysis of an active magnetic regenerative cascade system.
Do simple magnetic refrigeration test devices lead to more successful prototypes?
Design and assembly of a linear reciprocating magnetic refrigerator.
The effective magnetic system for the magnetocaloric refrigerator.
New investigations in magnetic refrigeration device, AMR cycle and refrigerant bed performance evaluation.
Performance metrics for active magnetic refrigerators.
Development of a rotary magnetic refrigerator.
On the optimal magnet design for magnetic refrigeration.
Near room temperature magnetic refrigeration: the path to applications.
Magnetic entropy change from first principles and magneto-thermodynamic models.
Electromagnetic analysis of a multipole field source for a magnetic refrigeration system.
A practical model for performance analysis of a reciprocating room temperature magnetic regenerator.
Optimization of active magnetic regenerative refrigeration systems using design of experiments.
Numerical analysis of a reciprocative active magnetic regenerator. I. Fluid flow and heat transfer modelling.
Universal deltaT(T) curve: application for gadolinium and TbCo(2).
A standardization of the coefficient of performance for magnetic refrigerators, heat pumps and energy conversion machines.
Magnetocaloric effect of Gd(5)Si(2)Ge(2) and its characteristics under different operating conditions.
Influence of an applied magnetic field on the structural transitions in RCo(2) (R= Dy, Ho, Er) compounds.
Study of the field dependence of the magnetocaloric effect in Nd(1.25)Fe(11)Ti: a multiphase magnetic system.
Direct measurement of the magnetocaloric effect in LaFe[13-x-y)Co(y)]Si(x) compounds near room temperature.
Magnetocaloric properties of some derivatives of Mn(3)Sn(2).
Magnetocaloric effect in Co-based amorphous ribbons.
What controls the key properties in giant magnetocaloric magnetic materials?
Dynamic magnetocaloric effect in the intermetallic R-M (M= Al, Co, Fe) compounds.
Setup for express measurements of the magnetocaloric effect.