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A water conveyance route of approximately 1.9 km has been established from the Tsuchida Shimosen headworks, which takes water from the Nagase River, to the power station. Utilizing a drop of about 43.03 m, two turbines are operated using a maximum of 3.75 m³/s of water taken from the irrigation water.
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Free membership registrationWe aim to create new cities and communities through the process of "industrial creation" by combining regional characteristics and the renewable energy resources available in the region, and by introducing, disseminating, and expanding small-scale, autonomous, and decentralized renewable energy facilities. We will diversify "small-scale," "autonomous," and "decentralized" renewable energy facilities utilizing regional energy, integrating them with AI, ICT, and IoT. By establishing a "regional energy circulation system" that is resilient to large-scale emergencies and achieves a reduction in total energy costs and CO2 emissions for local residents, we will "visualize the recovery from Fukushima" since March 11 and protect Japan from the threats of the Nankai Trough earthquake through an environmental strategy project and the "emergence" of environmental products. 【Business Activities (Partial)】 ■ Power generation and heat supply business using renewable energy, along with its planning, management, and operation, as well as related services for the supply and sale of electricity and heat (heating, cooling, and hot water). ■ Development, manufacturing, and sales of power generation, heat generation, and management systems related to renewable energy, as well as consulting services. *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registrationOur company provides "local energy services" that supply heat and electricity by mixing renewable energy from diverse small-scale and decentralized renewable energy facilities. We handle the overall coordination and consulting for projects, including site surveys, system design, subsidy applications, and electricity sales. Rather than simply proposing a single energy supply system, we combine energy sources tailored to the regional characteristics and environmental business objectives of our customers, offering a stable heat and electricity supply system along with environmental equipment. 【Combination of Renewable Energy↓】 ■ Solar Power ■ Solar Thermal ■ Geothermal ■ Biomass ■ Small Hydropower We make proposals that align with our customers' needs. For more details, please refer to the related link page or feel free to contact us.
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Free membership registrationZEB (Net Zero Energy Building) is an abbreviation for a net zero energy building, which is a structure that achieves an annual primary energy consumption of zero or less by improving energy efficiency in architecture and equipment and utilizing renewable energy sources. According to the definition of ZEB, it is evaluated at the design stage using calculations based on the "Ministerial Ordinance for Establishing Energy Consumption Standards for Buildings, etc. (Ministerial Ordinance No. 1 of the Ministry of Economy, Trade and Industry and the Ministry of Land, Infrastructure, Transport and Tourism, 2016)" or an equivalent method, excluding "other loads." *For more details, please refer to the PDF document or feel free to contact us.
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Free membership registration"V2X" is a power conditioning system that allows electricity stored in vehicles to be used as a power source in everyday life. It is a system that manages energy and facilitates the exchange of electricity between electric vehicles, plug-in hybrid vehicles (PHVs), and homes, maintaining optimal conditions at all times. Due to its three-phase compatibility (10kW), it can serve as a power source for businesses such as government offices and factories. It simultaneously achieves daily energy savings and eco-friendliness while providing a power supply source during emergencies. In the event of a disaster, this product can be connected to a vehicle to supply stable electricity for extended periods to evacuation centers and medical relief stations. [Features] - Strong in emergencies - Three-phase compatible - Compatible with renewable energy - Energy management system that maintains optimal conditions at all times *For more details, please refer to the PDF materials or feel free to contact us.
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Free membership registrationThis is an introduction to a case study of a mega-solar power generation project by a local venture company in Fukushima Prefecture. It is recognized as the first certified project under the Kawauchi Village Reconstruction Development Plan (Reconstruction Agency) and has been certified for the fiscal year 2014 by the Ministry of Economy, Trade and Industry for the promotion of the introduction of renewable energy generation facilities. With the adoption of the "Half Agriculture, Half Energy Model Promotion Project Subsidy," part of the profits from selling electricity was utilized to create the "Kaeru Kawauchi Reconstruction Support Bus" project. This initiative promoted the expansion of living conditions for returnees and accelerated the return of villagers. [Case Overview] ■ Equipment and Scale - Maximum capacity of the power generation facility: Approximately 2.6 MW - Fixed output of power generation: Approximately 2 MW (1,990 kW) *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationAt the fairy tale inn, Yoneya, we have introduced a "high-efficiency heat pump utilizing hot spring discharge heat" as part of our energy-saving project. At Yoneya, we implemented a project that utilizes hot spring (discharge) heat, classified as one of the renewable energy sources known as "geothermal heat," to provide heating, cooling, and hot water through a heat pump. This project simultaneously reduced the facility's annual fossil fuel consumption and CO2 emissions. Additionally, we incorporated a recycled lithium-ion battery to establish an independent system for heat and electricity, resulting in an annual reduction of approximately 5.7 million yen in running costs through the hot spring discharge heat heat pump and the PV generation & V2X battery storage system. 【Case Overview】 ■ Equipment and Scale - Hot spring discharge compatible water-cooled heat pump 60HP × 1 unit Cooling capacity: 131.6KW, Heating capacity: 178.8KW, Hot water supply capacity: 220.0KW - Hot water storage tank: 7.5m3 - Plate heat exchanger: Heat exchange amount 173KW - Installation of a visualization monitor for the high-efficiency heat pump system utilizing hot spring discharge heat *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationAt the Ooguchi Town North Nursery, which has introduced a geothermal heat pump, a project was implemented to utilize the abundant geothermal energy from underground water in the town for heating and cooling public facilities, as well as for floor heating systems, thereby creating a low-cost public facility management model that leverages local characteristics during the renovation. The facility is small-scale, self-sufficient, and decentralized, capable of responding to emergencies such as the Nankai Trough earthquake, and it is also expected to attract attention as a tourist facility due to its unique appearance. 【Project Overview】 ■ Equipment and Scale - Geothermal source air-water heat pump 30HP × 1 unit - Air-water multi air conditioning system 72 horsepower *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationWe would like to introduce an example of the commissioned work we conducted for the Aichi Prefecture Oguchi Town Global Warming Countermeasure Action Plan (Regional Policy Edition). 【Scope of Work】 1. Organization of basic information 2. Estimation of current greenhouse gas emissions 3. Business operator hearing survey 4. Future design of greenhouse gas emissions 5. Examination of measures, policies, and effects To share issues within the community, we summarized the background of the efforts to address global warming policies in the region, taking into account the current state of global warming, international and domestic trends, and regional characteristics. We also aimed to understand the advanced initiatives of local businesses regarding greenhouse gas emission reduction and energy-saving measures by conducting hearing surveys with about 10 businesses. *For more details, please refer to the related links or feel free to contact us.*
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Free membership registrationAt "Saint Olive's Village," we adopted a geothermal heat pump system with the goal of reducing the costs of heating, cooling, hot water supply, and bathtub heating. We implemented construction for the introduction of geothermal energy utilization. Since the base heat source relies on geothermal energy, the running costs related to thermal energy are free, excluding the operating power of the heat pump itself and the self-consumption power of mechanical equipment, which is the greatest business advantage. 【Case Overview (Excerpt)】 ■ Equipment and Scale - Geothermal heat source heat pump chiller (standard type) Cooling capacity: 110.59 kW, 45 HP, 1 unit; Heating capacity: 117.88 kW - Geothermal heat source heat pump chiller (high temperature type) Cooling capacity: 147.94 kW, 60 HP, 1 unit; Heating capacity: 153.39 kW - Heat circulation pump Line pump 65φ×370l/min×5m, 1 unit; Line pump 65φ×470l/min×7m, 1 unit *For more details, please refer to the related links or feel free to contact us.
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Free membership registrationThe "Smart E System" is a system that utilizes the heat from dialysis wastewater and RO concentrated wastewater, which are discarded during dialysis treatment, to warm the feed water of the RO device. By using your current dialysis system along with this product, you can save approximately 74% on electricity costs annually. For example, in the case of 100 dialysis beds and 300 patients, it is possible to cut the current electricity costs by 4 million yen per year. Additionally, it features a compact design that integrates a heat exchanger, heat pump, and feed water tank into a single unit. 【Features】 ■ Safety: Designed to prevent mixing of dialysis waste liquid and feed water ■ Savings: Significant reduction in running costs through the reuse of wastewater temperature ■ ECO: Significant reduction in CO2 emissions through the reuse of wastewater temperature *For more details, please refer to the PDF materials or feel free to contact us.
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Free membership registration"Biomass" refers to the amount of biological resources and is a term used to describe "renewable, biologically derived organic resources." Among these, biomass derived from wood is referred to as "wood biomass." The energy use of wood has a carbon-neutral characteristic, meaning it does not affect the concentration of carbon dioxide in the atmosphere. When leftover materials from sawmills and demolition wood from houses are effectively utilized as biomass energy, it helps reduce waste and contributes to the formation of a circular society. To combat global warming, efforts toward decarbonization are progressing worldwide. Wood biomass is gaining attention because, overall, it does not increase the concentration of carbon dioxide in the atmosphere. **Benefits of Utilizing Wood Biomass** - Helps prevent global warming by suppressing carbon dioxide emissions - Reduces waste generation, contributing to the formation of a circular society - Actively utilized as an energy resource (expanding the use of biomass energy) - Contributes to the proper management of forests - Revitalizes mountainous regions by utilizing local unused resources as energy *For more details, please refer to the PDF document or feel free to contact us.*
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