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resistivity along with thermal conductivity. It also has a range of 0.2 to 2 W/m·K with an accuracy of ±10% for thermal conductivity (Decagon Devices, 2011). For this study, the KS-1 sensor was used for liquid phase measurements while the TR-1 sensor was found to be more compatible with solid NEPCM and therefore was used. Before the measurements, the sensors were calibrated with the standard materials provided by the manufacturer. Figure 4.3: KD2 Pro Thermal Conductivity Analyzer and its sensors: TR-1, KS-1, SH-1 (from left to right). Monitoring the thermal conductivity of NEPCMs in liquid phase Samples in liquid phase were taken to the environmental chamber and thermal conductivity measurements were first conducted in liquid phase at 70°C within the first hour after sample preparation. Then, the temperature was set to 60°C and continuous thermal conductivity measurements were repeated at that temperature hourly, as shown in Figure 4.4. The main purpose of this test is to observe if there is any change in thermal conductivity due to sedimentation and nanoparticle instability over time. 55PDF Image | THERMAL ENERGY STORAGE USING PARAFFIN WAX
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