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Study of Adsorbent Energy Density and Regeneration for Long Term Thermal Energy Storage

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Study of Adsorbent Energy Density and Regeneration for Long Term Thermal Energy Storage ( study-adsorbent-energy-density-and-regeneration-long-term-th )

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show similar trends. Therefore, between 30% and 50% of the thermal energy inputted to the system will produce useful heating. 0.7 0.6 0.5 0.4 0.3 0.2 0.1 0 0 50 100 150 200 250 300 Regeneration temperature (oC) Figure 2: Efficiency of hybrid adsorbent thermal energy storage system as a function of regeneration temperature for different superficial velocities. Feasibility Analysis The characterization of the adsorption TES from the previous section will be combined with a solar heat source and typical space heating requirement to complete the long term TES system. The analysis will explore three different scenarios; a residential household (250m3), a 10-storey building (34 000m3) and a retail/office space (14 000m3). The solar heat source for the scenarios considered in this study are concentrating solar panels designed for thermal energy collection produced by Menova Energy Inc (Ottawa, Ontario, Canada) [10]: the residential PS-35 (21 kWthermal, span of 6.5m x 6.5m and a collector area of 35m2) and the industrial PS-140 (85 kWthermal, span of 13m x 13m and a collector area of 140m2). The space heating load has been modeled by HOT2000 V10.3 and EE4E, which are residential and commercial energy simulation software developed by the CANMET Energy Technology Center (Ottawa, Ontario, Canada) [5]. The residential household is combined with one PS-35 and the 10 Storey building and retail/office space are matched with several PS-140s. Figure 3 displays the monthly supply of energy by the PS-35 panel and demand for the household. The solid curve represents the space heating requirements of a typical Canadian household located in Montreal, Quebec. The other curve represents the average thermal output from the PS-35 including a 3% heat loss for piping. Similar trends are observed with the other two scenarios considered, although the magnitude of the curves is much greater. The 0.3 m/s 0.45 m/s 0.2 m/s 0.15 m/s 4 Storage Efficiency

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