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- W11112612 abstract "Dispatchability of CSP and a further reduction of levelized electricity costs are strong incentives for thedevelopment of cost-efficient technical solutions for thermal storage systems. A heat storage system usingfine-grained particles as its storage material is a technology option that offers novel low-cost solutions. Theimplementation of this concept however depends on a viable concept for an air-to-particle heat exchanger, acomponent that is needed to heat up the particle flow and that is not available on the market today. Solar-Institut Julich (SIJ) and the German Aerospace Centre (DLR) are developing and testing a new air-to-particleheat exchanger (Warerkar et al., 2009). Relevant problems include high temperature gradients in sand andframe structure, the pressure drop through the heat exchanger, the thermodynamic behavior and the fluiddynamic interaction within the bulk material.In this paper open questions on material properties of the sand-like inventory are addressed. Highrequirements are placed on the particulate materials used in sand-air heat-exchanger to ensure a smooth andefficient operation for many years. Hence, a detailed analysis of candidate bulk materials and their propertiesare of ample importance for the development of the technology. The focus of this work is put on propertieslike effective thermal bulk conductivity, thermal shock resistance, and attrition aspects." @default.
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- W11112612 date "2011-01-01" @default.
- W11112612 modified "2023-09-25" @default.
- W11112612 title "Properties of Bulk Materials for High-Temperature Air-Sand Heat Exchangers" @default.
- W11112612 doi "https://doi.org/10.18086/swc.2011.09.01" @default.
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