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Pregled bibliografske jedinice broj: 1075280

Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery


Nyamsi Nyallang, Serge; Lototskyy, Mykhaylo; Tolj, Ivan
Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery // Energies, 13 (2020), 16; 4216, 18 doi:10.3390/en13164216 (međunarodna recenzija, članak, znanstveni)


CROSBI ID: 1075280 Za ispravke kontaktirajte CROSBI podršku putem web obrasca

Naslov
Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery

Autori
Nyamsi Nyallang, Serge ; Lototskyy, Mykhaylo ; Tolj, Ivan

Izvornik
Energies (1996-1073) 13 (2020), 16; 4216, 18

Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni

Ključne riječi
metal hydride ; thermochemical heat storage ; waste heat recovery ; phase change materials ; energy efficiency

Sažetak
The integration of thermal energy storage systems (TES) in waste-heat recovery applications shows great potential for energy efficiency improvement. In this study, a 2D mathematical model is formulated to analyze the performance of a two-tank thermochemical heat storage system using metal hydrides pair (Mg2Ni/LaNi5), for high-temperature waste heat recovery. Moreover, the system integrates a phase change material (PCM) to store and restore the heat of reaction of LaNi5. The effects of key properties of the PCM on the dynamics of the heat storage system were analyzed. Then, the TES was optimized using a genetic algorithm-based multi-objective optimization tool (NSGA-II), to maximize the power density, the energy density and storage efficiency simultaneously. The results indicate that the melting point Tm and the effective thermal conductivity of the PCM greatly affect the energy storage density and power output. For the range of melting point Tm = 30–50 °C used in this study, it was shown that a PCM with Tm = 47–49 °C leads to a maximum heat storage performance. Indeed, at that melting point narrow range, the thermodynamic driving force of reaction between metal hydrides during the heat charging and discharging processes is almost equal. The increase in the effective thermal conductivity by the addition of graphite brings about a tradeoff between increasing power output and decreasing the energy storage density. Finally, the hysteresis behavior (the difference between the melting and freezing point) only negatively impacts energy storage and power density during the heat discharging process by up to 9%. This study paves the way for the selection of PCMs for such combined thermochemical-latent heat storage systems.

Izvorni jezik
Engleski

Znanstvena područja
Kemijsko inženjerstvo, Strojarstvo



POVEZANOST RADA


Ustanove:
Fakultet elektrotehnike, strojarstva i brodogradnje, Split

Profili:

Avatar Url Ivan Tolj (autor)

Poveznice na cjeloviti tekst rada:

doi www.mdpi.com

Citiraj ovu publikaciju:

Nyamsi Nyallang, Serge; Lototskyy, Mykhaylo; Tolj, Ivan
Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery // Energies, 13 (2020), 16; 4216, 18 doi:10.3390/en13164216 (međunarodna recenzija, članak, znanstveni)
Nyamsi Nyallang, S., Lototskyy, M. & Tolj, I. (2020) Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery. Energies, 13 (16), 4216, 18 doi:10.3390/en13164216.
@article{article, author = {Nyamsi Nyallang, Serge and Lototskyy, Mykhaylo and Tolj, Ivan}, year = {2020}, pages = {18}, DOI = {10.3390/en13164216}, chapter = {4216}, keywords = {metal hydride, thermochemical heat storage, waste heat recovery, phase change materials, energy efficiency}, journal = {Energies}, doi = {10.3390/en13164216}, volume = {13}, number = {16}, issn = {1996-1073}, title = {Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery}, keyword = {metal hydride, thermochemical heat storage, waste heat recovery, phase change materials, energy efficiency}, chapternumber = {4216} }
@article{article, author = {Nyamsi Nyallang, Serge and Lototskyy, Mykhaylo and Tolj, Ivan}, year = {2020}, pages = {18}, DOI = {10.3390/en13164216}, chapter = {4216}, keywords = {metal hydride, thermochemical heat storage, waste heat recovery, phase change materials, energy efficiency}, journal = {Energies}, doi = {10.3390/en13164216}, volume = {13}, number = {16}, issn = {1996-1073}, title = {Optimal Design of Combined Two-Tank Latent and Metal Hydrides-Based Thermochemical Heat Storage Systems for High-Temperature Waste Heat Recovery}, keyword = {metal hydride, thermochemical heat storage, waste heat recovery, phase change materials, energy efficiency}, chapternumber = {4216} }

Časopis indeksira:


  • Current Contents Connect (CCC)
  • Web of Science Core Collection (WoSCC)
    • Science Citation Index Expanded (SCI-EXP)
    • SCI-EXP, SSCI i/ili A&HCI
  • Scopus


Citati:





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