Heat Charging–Discharging Periods of Paraffin Wax

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Heat Charging–Discharging Periods of Paraffin Wax ( heat-charging–discharging-periods-paraffin-wax )

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Micromachines 2022, 13, 1456 9 of 10 Micromachines 2022, 13, x capability of the PCM to utilize the available latent heat to store and discharge with an enhanced time duration. 10 of 12 Figure 6. TempFiegruatruere6c. uTrveemspoefrtahtuerpearcaufrfivne/sstoefatittheecopmarpaofsfinte/sdteuartinteg tchoemcphoasrigtiengdaunridngdistchhearcghinargging and discharging phase: (a) PW, (b) PCMS, and (c) PCMSB. phase: (a) PW, (b) PCMS, and (c) PCMSB. 4. Conclusio4n.sConclusions The results Tobhteairneseudltbsyobetxapineerdimbeynteaxlplyersimtuednytainllgy tshtuedmyienlgtinthgeamndeltfirnegezaindg forefetzhieng of the paraffin/steaptaitreafcfoinm/spteoastiittelceodmtopotshietefoleldlotwoitnhge cfolnlocwluisnigoncso:nclusions: • Incorporating steatite powder with paraffin wax enhanced the heat transfer of the • Incorporating steatite powder with paraffin wax enhanced the heat transfer of the energy storage system, consequently increasing the rate of charging and energy storage system, consequently increasing the rate of charging and discharging. discharging. • The usage of the ball-milled steatite composite increased the discharging time at 50% • The usage of the ball-milled steatite composite increased the discharging time at and the micro-size steatite composite at 33.33%. The thermal conductivity value of the 50% and the micro-size steatite composite at 33.33%. The thermal conductivity milled steatite-based PCM composite was 7.7% higher than PW. value of the milled steatite-based PCM composite was 7.7% higher than PW. • The overall increase in the discharge time showed the capability of the PCM material • The overall increase in the discharge time showed the capability of the PCM to store the available thermal energy and discharge it as needed by the incorporated material to store the available thermal energy and discharge it as needed by the of heat energy and provides hot water availability for a longer period at a higher temperature. AuthorContriAbutthionrsC:oCnotrnibceuptitounasl:izCaotinocne,pmtueatlhizoadtiolno,gmy,etwhroidtionlogg—y,owrigriitninagl—droarfitgpinraelpdaraftiopnre,pSa.Kra.tion,S.K. validation,wrivtainligd—atiroenv,iewraintidnge—dirtienvgie,wsupaenrvdisieodni,tifnogrm,asluapnearlvyisisonS,.-J.fHor.;mreaslouarncaelsy,siinsveSs.t-iJg.Hat.i;onresources, datacuration,inDv.eRst.iagnatdioSn.Ada.Sta.Acullratuiothno,rDs.Rh.avanedreSa.dA.aSn.dAlalgaruetehdortsohthaveepruebadlisahnedavgerreseidontofthtehepublished manuscript. version of the manuscript. Funding: This research received no external funding. Funding: This research received no external funding. Institutional Review Board Statement: Not applicable. Institutional Review Board Statement: Not applicable. Informed Consent Statement: Not applicable. Informed Consent Statement: Not applicable. Data Availability Statement: No data availability statement. Data Availability Statement: No data availability statement. Conflicts of Interest: The authors declare no conflicts of interest. Conflicts of Interest: The authors declare no conflict of interest. system. incorporated system. • PCM reinforcement with ball-milled steatite in solar water heaters enhances the storage • PCM reinforcement with ball-milled steatite in solar water heaters enhances the storage of heat energy and provides hot water availability for a longer period at a higher temperature.

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