Skip to content
Research Article Open access CC BY 4.0

Hybird, Solar and Biomass Energy System for Heating Greenhouse Sweet Coloured Pepper

S. M. Abdellatif, N. M. El Ashmawy, M. K. El-Bakhaswan, H. H. Tarabye

Advances in Research · pp. 1–21 · Published 18 Nov 2016

10.9734/AIR/2016/30019

Abstract

The main drawback of greenhouse heating systems based on solar energy is the unavailability at nighttime and the variation of its value from hour to hour and month to another during daylight-time. However, use the combination of two-source of renewable energy (solar energy and biomass heat energy) successfully provides appropriate amount of heat energy for heating greenhouse at nighttime. The commercial greenhouses have the highest demand of heat energy for heating the indoor air as compared with other agricultural industry sectors. The investigation presented in this article is aimed at evaluating the technical and design feasibility of using biomass heat energy to assist the solar energy heating system at the eastern area of coastal delta, Egypt (Latitude and longitude are 31.045º N and 31.37º E, respectively, and altitude 6.0 m above the sea level). The hybrid heating system (solar and biomass heating systems) is mainly consists of two different heating systems, a complete solar heating system (6 collectors, storage tank and heat exchanger) and biomass burner (water and air coils, and air heat exchanger). The obtained results reveal that, over 180 days heating season (from November 2015 to March 2016) the solar heating system collected 12712 kWh (45.763 GJ) of which 12316 kWh (44.338 GJ) of solar heat energy was stored in the storage tank. It provided 30.32% of the total heat energy required for heating the greenhouse. The biomass heating system provided 19795 kWh (71.262 GJ) of heat energy which provided 58.55% of the total heat energy required for heating the greenhouse (225.389 kWh). Ultimately, the heat energy provided by the hybrid heating system (88.87%) has been used successfully to heat up the indoor air of the commercial greenhouse sweet coloured pepper.

Biomass heat energy solar energy hybrid heating system burden of heating thermal performance

Cited by 4

Applications of Artificial Neural Networks in Greenhouse Technology and Overview for Smart Agriculture Development

Axel Escamilla-García, Genaro M. Soto-Zarazúa, Manuel Toledano-Ayala · Applied Sciences · 2020

Agricultural Greenhouses: Resource Management Technologies and Perspectives for Zero Greenhouse Gas Emissions

Chrysanthos Maraveas, Christos-Spyridon Karavas, Dimitrios Loukatos · Agriculture · 2023

Development of a Low-Cost Biomass Furnace for Greenhouse Heating

Asif Ali, Tahir Iqbal, Muhammad Jehanzeb Masud Cheema · Sustainability · 2021

RETRACTED: Recent advances in net-zero energy greenhouses and adapted thermal energy storage systems

Shiva Gorjian, Hossein Ebadi, Gholamhassan Najafi · Sustainable Energy Technologies and Assessments · 2021

Article metrics

Real usage data collected on this platform.

0

Page views

0

PDF downloads

0

Outbound clicks

4

Citations

Views by country

Approximate, from request IP at view time — not citizenship or institution. Countries with fewer than 5 views are grouped as "Other".

No views recorded yet.

Traffic sources

Referring site, by host.

No traffic recorded yet.

Views and downloads exclude known bots/crawlers. Citations combines this platform's own DOI-resolved index with each external source's own reported total — see Cited by above for individually listed citing works. Last refreshed 0 seconds ago.