Article ID Journal Published Year Pages File Type
1550866 Solar Energy 2011 14 Pages PDF
Abstract

A novel integrated collector storage solar water heater (ICSSWH) was designed, optically analysed and experimentally studied. The unit was based around a heat retaining ICS vessel design consisting of two concentric cylinders mounted horizontally inside a stationary truncated asymmetric compound parabolic concentrating (CPC) reflector trough. The annulus between the cylinders was partially evacuated and contained a small amount of water, which changed phase at low temperature, producing a vapour and creating a thermal diode transfer mechanism from the outer absorbing surface to the inner storage vessel surface. The absorbing outer vessel surface covered with selective absorber film and was partially exposed to solar radiation. The remaining vessel surface area (including the vessel ends) was thermally insulated to improve heat retention during the night. Curved reflectors with a high reflectance along with high transmittance glazing were also used to improve effective operation of the ICS system. The thermal behaviour of the ICS system was compared to that of a Flat Plate Thermosiphonic Unit (FPTU). The experimental results showed that the ICS system is as effective during daily operation as it is during the night. Furthermore, the thermal loss coefficient during night gives similar values between the ICS system and FPTU.

► Optical and thermal behaviour of a novel ICS solar water heater consisting of two concentric cylinders. ► Thermal diode transfer mechanism from the outer absorbing surface to the inner storage vessel surface. ► Effective operation of ICS solar water heater under several weather conditions. ► Very low thermal losses coefficient during night operation.

Related Topics
Physical Sciences and Engineering Energy Renewable Energy, Sustainability and the Environment
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