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Optimized packed bed designs to get maximum temperature span or maximum efficiency are different.
The maximum temperature span achieved is 5.0 K, in a free run condition.
As comparative criteria the maximum temperature span, the cooling capacity and the experimentally predicted COP were taken into consideration.
Using a total of 110 g of refrigerant, the device produces a maximum temperature span under no thermal load of 29 °C, and 10 °C under 50 W.
Such characteristics include the operating frequency, magnet field type and field strength, regenerator materials and geometry, and maximum temperature span and cooling capacity.
Reducing the temporal width of the high field portion of the magnetic field profile by 10% leads to a drop in maximum temperature span and maximum cooling capacity of 5 20%.
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The maximum no-load temperature span of 26.8 K and a maximum cooling power of 33 W at a zero temperature span were obtained with the frequency of 0.5 Hz under the maximum field of 1.4 T.
Using gadolinium as the magnetocaloric material and an applied magnetic field of 1.5 T, a maximum no-load temperature span of 50.9 K and a maximum COP of 4.2 are achieved by a 72-lattice configuration.
Operating with 2.8 kg of commercial grade Gd spheres a maximum no-span cooling power of 1010 W and a maximum zero load temperature span of 25.4 K have been achieved.
The maximum no-load temperature span was 12 K at 1.5 Hz and 150 L h−1, and the maximum zero-span cooling power was 150 W at 0.8 Hz and 200 L h−1.
The demonstrator achieves a maximum no-load temperature span close to 20 K, with a regeneration ratio of ξ = 4.1, and a maximum cooling power Q˙c= 6 W at zero temperature span.
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