Matches in SemOpenAlex for { <https://semopenalex.org/work/W3036763732> ?p ?o ?g. }
- W3036763732 endingPage "115024" @default.
- W3036763732 startingPage "115024" @default.
- W3036763732 abstract "Thermal energy storage (TES) technologies have been traditionally classified into sensible, latent and thermochemical categories. TES needs significant research efforts to address some fundamental challenges to reach its full potential. The hybridisation of TES technologies provides potentially a highly effective solution to the challenges. We present here a new concept, the 3 in 1 system, examining the feasibility, and the applied aspects of the newly proposed technology. The 3 in 1 system integrates the three known thermal storage methods of sensible heat, latent heat and thermochemical based TES into one system, providing three different operational configurations with cascading, charging integrated and discharging integrated working conditions. These different configurations offer controllability of TES charge/discharge processes while enhancing system-level efficiency. The proof of concept consists of a co-working matrix of a polymer as the phase change material (PCM), high-density polyethylene, and one of the most studied thermochemical material (TCM), MgSO4·7H2O. The feasibility of the composite containing 80–90 wt% of TCM was studied, over 15 cycles, for mechanical integrity, stability, energy stored and reaction kinetics. The results show that the system has a great potential for storing heat, up to 2 GJ∙m−3 and offers a wide working temperature range, from 30 °C to ∼150 °C. The combination of the PCM/TCM pairs give the composites mechanical integrity while accommodating the volume change and maintaining the structural stability during thermal cycling. This novel idea addresses some key technology gaps in TES particularly degradation and hence short life-span of TCM, cost-effectiveness and flexibility of the TCM based technology, thus offers potential paradigm shift to the thermal energy storage technology." @default.
- W3036763732 created "2020-06-25" @default.
- W3036763732 creator A5012909632 @default.
- W3036763732 creator A5037768008 @default.
- W3036763732 creator A5043379681 @default.
- W3036763732 creator A5044212436 @default.
- W3036763732 date "2020-09-01" @default.
- W3036763732 modified "2023-10-17" @default.
- W3036763732 title "Hybrid 3 in 1 thermal energy storage system – Outlook for a novel storage strategy" @default.
- W3036763732 cites W1966820209 @default.
- W3036763732 cites W1968606282 @default.
- W3036763732 cites W1971617563 @default.
- W3036763732 cites W1975227800 @default.
- W3036763732 cites W1981111241 @default.
- W3036763732 cites W1983948899 @default.
- W3036763732 cites W1984513983 @default.
- W3036763732 cites W1988149977 @default.
- W3036763732 cites W1992170257 @default.
- W3036763732 cites W1995884208 @default.
- W3036763732 cites W1997956442 @default.
- W3036763732 cites W1998608262 @default.
- W3036763732 cites W2000291980 @default.
- W3036763732 cites W2003780838 @default.
- W3036763732 cites W2013797079 @default.
- W3036763732 cites W2016831704 @default.
- W3036763732 cites W2016964441 @default.
- W3036763732 cites W2042043328 @default.
- W3036763732 cites W2050812678 @default.
- W3036763732 cites W2053448154 @default.
- W3036763732 cites W2060435696 @default.
- W3036763732 cites W2062017110 @default.
- W3036763732 cites W2062799841 @default.
- W3036763732 cites W2063422522 @default.
- W3036763732 cites W2073317732 @default.
- W3036763732 cites W2077300952 @default.
- W3036763732 cites W2078088973 @default.
- W3036763732 cites W2086031928 @default.
- W3036763732 cites W2089525884 @default.
- W3036763732 cites W2093983160 @default.
- W3036763732 cites W2126191649 @default.
- W3036763732 cites W2128670854 @default.
- W3036763732 cites W2139114131 @default.
- W3036763732 cites W2152482227 @default.
- W3036763732 cites W2155129816 @default.
- W3036763732 cites W2156868808 @default.
- W3036763732 cites W2189271970 @default.
- W3036763732 cites W2221316193 @default.
- W3036763732 cites W2226516472 @default.
- W3036763732 cites W2236023174 @default.
- W3036763732 cites W2341473176 @default.
- W3036763732 cites W2461617884 @default.
- W3036763732 cites W2464385842 @default.
- W3036763732 cites W2480105908 @default.
- W3036763732 cites W2484633601 @default.
- W3036763732 cites W2491825274 @default.
- W3036763732 cites W2509289864 @default.
- W3036763732 cites W2510625671 @default.
- W3036763732 cites W2516301478 @default.
- W3036763732 cites W2527277011 @default.
- W3036763732 cites W2548355484 @default.
- W3036763732 cites W2548576460 @default.
- W3036763732 cites W2553668731 @default.
- W3036763732 cites W2572330938 @default.
- W3036763732 cites W2578752446 @default.
- W3036763732 cites W2590964326 @default.
- W3036763732 cites W2595718434 @default.
- W3036763732 cites W2601890993 @default.
- W3036763732 cites W2604217761 @default.
- W3036763732 cites W2604779764 @default.
- W3036763732 cites W2612583564 @default.
- W3036763732 cites W2746923253 @default.
- W3036763732 cites W2750691930 @default.
- W3036763732 cites W2752626433 @default.
- W3036763732 cites W2761659029 @default.
- W3036763732 cites W2766134117 @default.
- W3036763732 cites W2767125116 @default.
- W3036763732 cites W2767803502 @default.
- W3036763732 cites W2779712381 @default.
- W3036763732 cites W2782121428 @default.
- W3036763732 cites W2786385826 @default.
- W3036763732 cites W2790477971 @default.
- W3036763732 cites W2795273263 @default.
- W3036763732 cites W2808022565 @default.
- W3036763732 cites W2889668372 @default.
- W3036763732 cites W2906034894 @default.
- W3036763732 cites W2908734388 @default.
- W3036763732 cites W2910694541 @default.
- W3036763732 cites W2914156947 @default.
- W3036763732 cites W2936960042 @default.
- W3036763732 cites W3081855651 @default.
- W3036763732 doi "https://doi.org/10.1016/j.apenergy.2020.115024" @default.
- W3036763732 hasPublicationYear "2020" @default.
- W3036763732 type Work @default.
- W3036763732 sameAs 3036763732 @default.
- W3036763732 citedByCount "19" @default.
- W3036763732 countsByYear W30367637322020 @default.
- W3036763732 countsByYear W30367637322021 @default.
- W3036763732 countsByYear W30367637322022 @default.