Dudung Mulyadi
The development of residential areas requires reliable water resources, particularly as high household consumption intensifies water scarcity. This study aims to calculate water demand and design an IoT-based dual reservoir system for residential clean water supply and distribution, integrating both groundwater and rainwater. A quantitative approach is used, involving water demand projection, geoelectric analysis to determine aquifer potential and borehole placement, and experimental testing of an IoT-controlled dual reservoir prototype. The system employs sensors (ultrasonic, flow, discharge), an ESP8266 microcontroller, mini pumps, valves, and the Blynk and ThingSpeak platforms for monitoring, control, and data logging. The prototype utilizes gravity-fed tanks and automatic level control to optimize pump operation and energy use. Results show that water demand will continue to rise, while geoelectric data and rainfall analysis confirm adequate water potential when optimally managed. The dual reservoir system operates effectively, successfully displaying real-time water levels and discharge on smartphones, with data logging via ThingSpeak and an overall error rate below 5%.
@article{23bc854c-53da-4abb-a097-500ce7fe7aa6,
title={Potential Utilization of Water Distribution System Using Iot-Based Energy Saving Dual Reservoir in Housing },
author={Dudung Mulyadi},
year={2025},
language={en}
}TY - JOUR TI - Potential Utilization of Water Distribution System Using Iot-Based Energy Saving Dual Reservoir in Housing AU - Dudung Mulyadi PY - 2025 LA - en ER -
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