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Temperature development of fresh concrete in the first 40 h shows that PCM additives do not affect the hydration reaction, but peak temperature was lowered due to the absorption of heat by PCM.
But it can be said that PCM itself had shorter endurance than ICE.
It is expected that PCM will have better scalability than other emerging technologies.
This work shows that PCM selection criteria must include the power demand.
This finding indicates that PCM performance is not the consequency of spurious correlations in the descriptor space.
It was found that PCM exaggerated the nonpolar contribution substantially, and therefore a QM treatment of solvation was not advantageous.
Similar(19)
The results showed that PCM-concrete has some useful characteristics such as better latent heat storage and thermal performance.
Practical simulation experiment indicated that PCM-14d specimen was 1.3 times better than nickel foam based photocatalytic material.
Comparison with numerical results confirms that PCM-based design is an excellent candidate design for transient electronic cooling applications.
The results confirm that PCM-TES can improve the energy efficiency and reduce the installed capacities of energy supply equipment, and that the optimal TES location in BCHP highly depends on the thermal performance of the TES equipment and the user load characteristics.
We conclude that PCMs improve an SHPHS system's energy efficiency.
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