Our next-generation products now incorporate optimized operating curves and a groundbreaking AMR housing design to enhance performance and efficiency. Due to production constraints resulting in lower-than-expected volumes of triangular microchannels, packed-bed AMRs were employed in the full-scale prototype. However, triangular microchannel AMRs were successfully fabricated and evaluated at a smaller scale, demonstrating their potential for future scalability.
In parallel, we developed a robust 1-D numerical model in MATLAB, capable of simulating diverse magnetocaloric refrigeration cycles, various heat transfer correlations, and multiple heat regeneration configurations. This versatile modeling tool provides a deeper understanding of system dynamics, enabling precise optimization of performance parameters and supporting the design of advanced magnetocaloric refrigeration systems. These combined efforts represent significant strides toward the realization of high-efficiency, commercially viable magnetocaloric cooling solutions.