研究目的
To design a renewable energy system to serve the electric load of super-efficient appliances with high penetration of renewable resources and low greenhouse gas emissions and cost of energy.
研究成果
The integration of super-efficient appliances with grid-tied solar PV systems significantly reduces energy consumption, cost, and greenhouse gas emissions. The grid-tied system with 68% renewable fraction is optimal, providing reliable power without shortages, low excess power, and economic benefits compared to off-grid systems and conventional grid power.
研究不足
The study is specific to Dubai's climate and solar resources; results may not be generalizable to other regions. The off-grid system produces high excess power that may be wasted if not used for thermal loads. The model assumes constant efficiency for components and does not account for all real-world variables like maintenance issues or policy changes.
1:Experimental Design and Method Selection:
The study uses modeling, simulation, and optimization methods, specifically the HOMER (Hybrid Optimization Model of Electric Renewable) tool, to design and analyze grid-tied and off-grid solar PV systems. Hourly calculations and optimization techniques are employed to study performance and cost.
2:Sample Selection and Data Sources:
The study focuses on residential buildings in Dubai, using data on solar irradiance, temperature, and electrical load profiles for conventional and super-efficient appliances.
3:List of Experimental Equipment and Materials:
Solar PV panels (generic flat plate PV, 330 W max power, 13% efficiency), lead acid batteries (1 kWh, 12 V nominal voltage), bidirectional inverter (48 VDC, 96% efficiency), and various super-efficient appliances (e.g., Bosch fridge, Whirlpool freezer, Siemens dishwasher).
4:Experimental Procedures and Operational Workflow:
The optimization method involves setting up search spaces for system components (solar PV, battery, inverter sizes), running simulations with 30-minute time steps, and using dispatch control strategies (cycle charging and load following). Performance metrics include energy production, consumption, excess power, renewable fraction, emissions, and cost.
5:Data Analysis Methods:
Data is analyzed using HOMER for optimization, with results compared for different renewable fractions and system configurations. Statistical analysis includes levelized cost of energy and greenhouse gas emissions calculations.
独家科研数据包,助您复现前沿成果,加速创新突破
获取完整内容-
dishwasher
Siemens IQ700 SN278I03TE
Siemens
Dish washing with high energy efficiency
-
TV
Panasonic TH-40CS610A
Panasonic
Television with LED screen for energy savings
-
solar PV panel
generic flat plate PV
Generate electricity from solar energy
-
inverter
bidirectional inverter
Convert DC power to AC power
-
battery
lead acid battery
Store electrical energy for later use
-
fridge
Bosch B10CB80NVW/01
Bosch
Refrigeration with energy-efficient features
-
freezer
Whirlpool EH151FXR
Whirlpool
Freezing with energy-efficient design
-
air conditioner
AirEase Pro Series 20LX
AirEase
Cooling with variable capacity and high efficiency
-
LED light
YWXLIGHT 12W
YWXLIGHT
Lighting with low energy consumption
-
LED spotlight
PAR38 18 leds
Spot lighting with energy efficiency
-
登录查看剩余8件设备及参数对照表
查看全部