Solar-biomass hybrid system satisfies home heating requirements in winter

Solar-biomass hybrid system satisfies home heating requirements in winter
Flow diagram of solar-biomass hybrid system. Credit: Gaoyang Hou and Lei Xu/ Northwest A&F University

Adding an organic matter power source to a solar energy unit could provide 100% heating for a single-story home during the coldest months of the year and help the environment. In the warmer months, the system could generate electricity surpluses that can be sold back to the grid.

In the Journal of Renewable and Sustainable Energy, researchers in China and the United States outline a addressing the challenge of 's inherent intermittency by adding biomass as another to advance a reliable, affordable heating solution while reducing carbon dioxide emissions.

"We demonstrate how this provides a cleaner, more energy-efficient heating solution than fossil fuel in single-family homes," co-author Gaoyang Hou said. "The system would be convenient in rural communities, where farms have large amounts of biomass in the form of agricultural waste that can be combined with solar power to close the urban-rural electricity gap and help the environment in the process."

The proposed solar-biomass hybrid system is based on distributed multi-generation technology that integrates photovoltaic-thermal (PV/T) and biomass power sources.

Biomass is produced from renewable organic matter, like corn husks, nut shells, wood pulp, and food and animal waste. A PV/T system, composed of PV panels and thermal collectors, is an that converts into both heat and electricity with higher energy conversion efficiency.

Studies on emerging decentralized hybrid systems have focused on neighborhoods and commercial greenhouse farms. The researchers evaluated their system based on the heating needs of a single-story cottage from November to March in northwest China, where temperatures in winter can dip below minus 20 degrees Celsius (minus 4 degrees Fahrenheit).

Of the total energy input, the PV/T collector generated 52% of the and captured 8% of the available thermal energy. The biomass generated the remaining 40% of the electricity needed to heat the house.

"For the entire heating season, solar power predominates the energy supply side, with the biomass energy generation kicking in when needed to make up the energy deficit," co-author Lei Xu said.

They created their simulation model in TRNSYS (short for transient system simulation tool), a modular thermal system software used to assess the performance of thermal and electrical renewable energy systems.

Their hybrid system simulation consisted of a PV/T collector, heat pump, storage tank with an immersed coiled-tube heat exchanger, flow diverters, and backup electric boiler, among other components.

The researchers are developing a solar-biomass system model to meet heating and cooling demands of a small commercial building and, if successful, plan to develop a prototype for experimental testing.

More information: Lei Xu et al, Modeling and assessment of a novel solar-biomass based distributed multi-generation system, Journal of Renewable and Sustainable Energy (2022). DOI: 10.1063/5.0085305

Citation: Solar-biomass hybrid system satisfies home heating requirements in winter (2022, May 31) retrieved 26 September 2023 from
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