THERMAL ENERGY STORAGE USING PARAFFIN WAX

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THERMAL ENERGY STORAGE USING PARAFFIN WAX ( thermal-energy-storage-using-paraffin-wax )

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After liquid phase measurements, samples were poured into the mold. It was observed that the majority of particles were stuck on the bottom surface, proving the settlement of particles. Therefore, it could be said that measurements for GNPs doped paraffin wax do not really represent the actual nanoparticle content of the samples. Only a small fraction of particles that were dispersed into the wax were scattered, slightly improving the thermal conductivity. Thus, the accuracy of measurements is questionable due to the instability of GNPs in paraffin wax. Increasing nanoparticles linearly did not lead to proportional enhancement in thermal conductivity. Particle settlement played an important role in not providing the desired enhancement. This is more evident in solid phase, where measurements were made at 25, 35 and 45°C. It was seen that increasing the GNP content led to a minor increase. This is also attributed to the reduced GNP content due to not being able to transfer the particles that get stuck on the bottom surface into a mold. Figure 4.9: Thermal conductivity change of Al2O3-wax samples with temperature. 60

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