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Efficiently recovering waste hot water! Energy-saving case study of a hot spring facility contributing to preheating for hot water supply.
The energy-saving heat exchange unit "G-HEX" reduces fuel costs by 30% and recovers the investment in three years. The power burden of the circulation pump is also minimized.
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Passive snow melting using drainage heat! Introduction of heat exchangers for energy-saving measures in school meal facilities.
The passive snow melting system "G-HEX," adopted in the food service facility, simultaneously achieved zero fuel usage, low costs, and reduced environmental impact.
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No need for boilers with drainage heat recovery! Energy-saving case study of a food factory using heat exchangers.
Simultaneous realization of warm cooling water and backup cooling with well water reduces the burden on chillers and boilers, contributing to energy savings and cost reduction!
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Safe without open flames! Case study on the introduction of a heat exchange unit that utilizes hot spring heat for heating.
Adopted by Mitsubishi Electric Building Techno-Service Co., Ltd.: Unused hot spring heat repurposed for indoor heating without corrosion risk! Safe and highly efficient energy-saving measures.
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Melting snow with drainage heat from a food service facility! Case study of an energy-saving passive method that eliminates the need for a boiler.
Introducing an example of a passive snow melting system that uses drainage from food service facilities as a heat source!
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Reusing the heat from cold wastewater! Case study of energy-saving heat recovery units for factories.
Simultaneously achieve heating of cold drainage water and cooling with well water. Effectively utilize waste heat to reduce boiler usage, resulting in a reduction in running costs that exceeds the initial investment.
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Case Study of Introducing Unused Heat Recovery Units for Energy-Saving Heating Utilizing Hot Spring Heat
Adopted by Mitsubishi Electric Building Techno-Service Co., Ltd., utilizing the heat from hot spring storage tanks to achieve safe and energy-saving heating.
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Preheating hot water with the heat from hot spring drainage! Case study of a heat recovery unit that reduces fuel consumption by 30%.
Using 40℃ hot spring discharge water to preheat 13℃ supply water to 26℃. Achieved a 30% reduction in fuel consumption and low-cost power for the circulation pump. Investment recovery realized in 3 years!
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Four features of the unused heat recovery heat exchange unit "G-HEX".
Here are four features of the unused heat recovery heat exchange unit G-HEX!
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"Utilizing nearby flowing water heat and unused heat" Heat exchange unit 'G-HEX'
A heat exchange unit that can extract nearby flowing water heat and unused heat from well water, seawater, and factory wastewater, and repurpose it for heating and cooling!
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G-HEX Tank-Type Heat Exchanger [Compatible with 10 Horsepower]
Compared to a typical φ500mm product, this economical heat exchange unit has a pressure loss of less than 1/10 and a heat exchange capacity 5 times greater!
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Basket-type heat exchanger "G-HEX"
Compared to a typical φ500mm product, the pressure loss is less than 1/10! The heat exchange capacity is five times greater, making it very economical.
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Unused heat recovery heat exchange unit "G-HEX"
The corrosion- and dirt-resistant resin water heat exchanger "G-HEX" captures the thermal energy from agricultural water and factory wastewater, utilizing it for heating and cooling.
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