PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
May 3, 20260 citationsOpen Access

Покращення теплових характеристик непрямого плоского сонячного колектора в застосуванні сонячних водонагрівачів

MSMochamad SugiriBSBudhi Muliawan SuyitnoEPErlanda Augupta Pane

Key Points

  • This research aims to improve the thermal performance of solar water heaters using flat plate solar collectors.
  • Developed an indirect, closed-loop solar water heater system incorporating flat plate solar collectors.
  • Utilized a K-type thermocouple for temperature monitoring and ensured continuous heat transfer via water circulation.
  • Employed phase change material for thermal energy storage during cloudy weather, using Internet of Things for temperature data.
  • Achieved a maximum thermal efficiency of 72% in the flat plate solar collector system.
  • Obtained a coefficient of performance (COP) of 10 with 100 W pump power and 1000 W heat input.
  • Observed average solar irradiance levels ranging from 850 to 950 W/m2.

Abstract

The object in this study is the process of heat transfer, energy conversion, and heat distribution through solar collectors in indirect systems. The problem to be solved is to develop sustainable alternatives powered by renewable energy sources, such as solar energy This study is focused on the research of a solar water heater (SWH) system incorporating flat plate solar collectors (FPSC). The system enhances the thermal performance of the FPSC through an indirect, closed-loop configuration. Water from the hot water tank (HWT) is circulated through the FPSC copper pipes by a pump powered by a Solar Power Plant, ensuring continuous heat transfer and efficient thermal performance. The system operates at a flow rate of 0.116 kg/s. A K-type thermocouple connected to a data logger records the water temperatures at the HWT’s inlet and outlet every 30 seconds. In addition to the system, the features of this study also focuses on phase change material (PCM) which uses mannitol material as thermal energy storage (TES) which will be used during cloudy or rainy weather. All equipment such as plunger pumps, heaters for PCM use solar electricity. The feature of this study also uses the Internet of Things (IoT) to find out the temperature in the solar water heater tank. The test results indicate a maximum FPSC thermal efficiency of 72% and a coefficient of performance (COP) of 10 under a pump power of 100 W and an absorbed heat input of 1000 W. The average solar irradiance ranged from 850 to 950 W/m2. These results demonstrate the potential of this technology to efficiently meet domestic hot-water demand and its suitability for deployment in tropical regions.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Sugiri et al. (2026) studied this question.

synapsesocial.com/papers/69f6e6e68071d4f1bdfc7845https://doi.org/10.15587/1729-4061.2026.358842
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Experimental Investigation and Performance Analysis of Flat Plate Solar Collector Having Distilled Water as the Heat Transfer Fluid2025
  2. 2Investigation of a dual-spiral flat plate solar water heater under natural convection: an experimental study2024 · 12 citations
  3. 3Long-term thermal performance and techno-economic assessment of a passive solar water heater with a flat-plate PPR-based solar collector2026
  4. 4Experimental evaluation of a solar water heating system integrating thermal mass and phase change material for enhanced efficiency in residential applications2025 · 7 citations
  5. 5Thermal Performance Enhancement of Solar Water Heaters Using Phase Change Materials in Flat Plate Collectors2024 · 2 citations