Rooftop PV Energy Potential Based on Housing Design in Brunei National Housing Planning †
Abstract
:1. Introduction
- What total solar capacity can be installed by utilizing the residential rooftop area?
- Compared with conventional solar farms, what is the impression of the total costs of utilizing all the detached houses in the country?
2. Methodology
Component | Model | Specifications | Cost (BND) | |
---|---|---|---|---|
PV Panel | SMA Demo Poly 5-425W [13] | Material Module Efficiency Maximum Power, Maximum Power Point Voltage, Maximum Power Point Current, Lifetime | Polycrystalline 16.6% 425 20 years | 153 |
Inverter | SMA SB 2.0-1VL-40 [14] | Maximum PV Output, Maximum Efficiency Lifetime | 97.2% 10 years | 1150 |
Lead–Acid Battery | SMA Sunny Island 4548- US [10] | Nominal Capacity Maximum Capacity Nominal Voltage Roundtrip Efficiency Lifetime | 96% 5 years | 200 |
3. Results
3.1. Optimal Residential Rooftop PV System Size and Costs
3.2. Projection of Residential Solar Capacity Nationwide
4. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
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Component | Capacity | Capital Costs (BND) | Replacement Costs (BND) |
---|---|---|---|
PV Panels | (36 modules) | 5508 | - |
Inverter | 13,800 | 13,800 (1 time) | |
Battery | 4000 | 12,000 (3 times) |
Annual Energy Consumption (kWh) | 2971 |
Max. available PV energy (kWh) | 18702 |
Used PV energy (kWh) | 3711 |
Directly consumed PV energy (kWh) | 1239 |
Intermediately stored PV energy (kWh) | 2472 |
Annual nominal energy throughputs of the battery (kWh) | 124 |
District | No. of Houses | Costs of PV Systems (BND) | PV Capacity () |
---|---|---|---|
Brunei-Muara | 34,475 | 1,692,998,300 | 527 |
Belait | 7924 | 389,131,792 | 121 |
Tutong | 6169 | 302,947,252 | 94 |
Temburong | 1304 | 64,036,832 | 20 |
Total No. of Houses | 49,872 | 2,449,114,176 | 763 |
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© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
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Hamdani, N.; Muhamad, N.A.; Petra, R. Rooftop PV Energy Potential Based on Housing Design in Brunei National Housing Planning. Eng. Proc. 2023, 53, 21. https://doi.org/10.3390/IOCBD2023-15174
Hamdani N, Muhamad NA, Petra R. Rooftop PV Energy Potential Based on Housing Design in Brunei National Housing Planning. Engineering Proceedings. 2023; 53(1):21. https://doi.org/10.3390/IOCBD2023-15174
Chicago/Turabian StyleHamdani, Nuramanina, Nor Asiah Muhamad, and Rafidah Petra. 2023. "Rooftop PV Energy Potential Based on Housing Design in Brunei National Housing Planning" Engineering Proceedings 53, no. 1: 21. https://doi.org/10.3390/IOCBD2023-15174
APA StyleHamdani, N., Muhamad, N. A., & Petra, R. (2023). Rooftop PV Energy Potential Based on Housing Design in Brunei National Housing Planning. Engineering Proceedings, 53(1), 21. https://doi.org/10.3390/IOCBD2023-15174