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Numerical Simulation of a Solar Domestic Hot Water System

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Published under licence by IOP Publishing Ltd
, , Citation L Mongibello et al 2014 J. Phys.: Conf. Ser. 547 012015 DOI 10.1088/1742-6596/547/1/012015

1742-6596/547/1/012015

Abstract

An innovative transient numerical model is presented for the simulation of a solar Domestic Hot Water (DHW) system. The solar collectors have been simulated by using a zerodimensional analytical model. The temperature distributions in the heat transfer fluid and in the water inside the tank have been evaluated by one-dimensional models. The reversion elimination algorithm has been used to include the effects of natural convection among the water layers at different heights in the tank on the thermal stratification. A finite difference implicit scheme has been implemented to solve the energy conservation equation in the coil heat exchanger, and the energy conservation equation in the tank has been solved by using the finite difference Euler implicit scheme. Energy conservation equations for the solar DHW components models have been coupled by means of a home-made implicit algorithm. Results of the simulation performed using as input data the experimental values of the ambient temperature and the solar irradiance in a summer day are presented and discussed.

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10.1088/1742-6596/547/1/012015