Benjamin Ternenge Abur

Adamu Sagir Gidado

Muhammad Hadi Ibrahim

Lawal Salisu

SIMULATION AND EXPERIMENTAL VALIDATION OF OPTIMAL TILT ANGLES ON THE THERMAL PERFORMANCE OF A SERPENTINE ACTIVE FLAT-PLATE SOLAR WATER HEATER IN A TROPICAL SAVANNA CLIMATE

Conventional fixed-tilt flat-plate solar water heaters often suffer from reduced efficiency due to seasonal variations in solar radiation, leading to greater dependence on unreliable and costly grid electricity for hot water supply in Nigerian pre-primary educational institutions. This study simulated, fabricated, experimentally tested, and validated an active serpentine flat-plate solar water heater (collector area 2.04 m², storage tank capacity 65 dm3) designed to provide hot water at 50 °C for pre-primary schools in Bauchi, Nigeria. System sizing and optimal collector tilt angles (monthly, quarterly, and annual) were determined using MATLAB. Thermal performance was simulated in TRNSYS 16 with Typical Meteorological Year (TMY) data for Bauchi. The prototype was tested under monthly optimal tilt during February-April 2025, with hourly temperature measurements using calibrated thermocouples. Model accuracy was assessed via root mean square error (RMSE) and Nash-Sutcliffe efficiency (NSE). Simulation results showed that monthly optimal tilt outperformed quarterly and fixed-latitude configurations, achieving the target 50°C by 09:00 h in most months and a peak of 82°C in April. Experimental validation indicated strong agreement (highest RMSE = 2.71°C in March; NSE = 0.92 in April), with experimental peaks reaching 85°C at 15:00 h in April. Economic analysis revealed that the ₦439,616 initial investment ...

Benjamin Ternenge Abur

Habou Dandakouta

Adisa Ademola Bello

Robinson Ichakpa Ejilah

Gideon Ayuba Duvuna

Godwin Egbudu Ede

TECHNO-ECONOMIC ANALYSIS AND CARBON (IV) EMISSION REDUCTION

System profitability analysis and carbon (IV) oxide emission saved by an indirect passive solar cabinet dryer for tomatoes drying was evaluated under Bauchi (Nigeria) prevailing weather condition. Dryer minimum annual throughput of 27.89 kg occurred in the design month of August at 180 days of drying with thermal energy output of 262.55 kWh. Financial analysis indicated a minimum annual cash flow of ₦7,826.61 for electricity energy saved with a payback period of 14.22 years which is less than the economic useful life of the dryer in the design month, while preventing 105.02 kg of carbon (IV) oxide emission. This illustrates a conventional energy cost saving method for drying high moisture crop using a cleaner form of energy. The study recommends the development and adaptation of solar dryers with auxiliary heating units for proper harnessing of solar energy for environmental sustenance and economic growth.   ...