Rotterdam’s unique approach to heat transition is a driver for cashing in on opportunities. Currently, 80% of the buildings in Rotterdam are heated by (domestic) gas boilers, while many houses…

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The innovative iRecovery project is the first of its kind in Italy, and now the heat from the steelworks that is normally lost will be caught and exploited to produce…

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Sinfra is a procurement association owned by its members, therefore covering almost the entire Swedish energy sector. Sinfras objective is to procure technology, and services on behalf of its members.…

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The district cooling network in Växjö is designed in order to increase the efficiency and be able to run the production in an economical beneficial way. Växjö Energi AB is…

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2017 Winner Expansion – 5th GDECA

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“ADEU is a system that centralizes energy production for heating, cooling and domestic hot water heating, servicing residential and commercial customers in the West Cambie neighborhood. It uses ground source…

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Tuzla is a city in the northeastern part of Bosnia and Herzegovina. It is the seat of the Tuzla Canton and is the economic, scientific, cultural, educational, health and tourist…

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In a consortium with SIJ, Metal Ravne, the local community of Ravne na Koroškem and the public research Institut Jožef Stefan, with its registered office in Slovenia, Petrol Energetika, d.o.o.…

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2017 Winner Modernization – 5th GDECA

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2017 Winner Emerging Market – 5th GDECA

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The Bordeaux-Euratlantic project was launched in 2014 and aims to develop the Bordeaux metropolis around a European position. This development involves an extension of the residential (1 million m²) and…

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2017 Winner New Scheme – 5th GDECA

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          Summary of the Vestforbrænding System View Vestforbrænding Project Vestforbrænding (VF) was founded by municipalities in 1970 with the aim to take care of waste management and replace landfills with energy recycling.…

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         Summary of the East Campus CT-HRSG System View East Campus CT-HRSG Modernization Project Penn State has reduced its campus greenhouse gas emissions by 18% since 2005 and has set…

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       Summary of the Soma District Heating System View Soma District Heating Projects Soma District Heating (DH) Project aims at improving the energy efficiency of the existing Soma Thermal Plant and…

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    Summary of the Brædstrup Fjernvarme System View Brædstrup Fjernvarme System Brædstrup Fjernvarme has during the last 10 years been a Danish frontrunner in how to make district heating efficient, cheap…

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        Summary of the Open District Heating System View Open District Heating (Öppen Fjärrvärme) System Recover heat with Open District Heating There is a large amount of surplus heat in Stockholm that…

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       Summary of the Rigas Siltums System View Rigas Siltums System Our company, the Joint Stock Company “RĪGAS SILTUMS”, started its operation on the 1st of May 1996. Today, its shareholders are…

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     Summary of the Korea District Heating Corporation Systems View Korea District Heating Corporation Systems Since its foundation in 1985, KDHC has contributed to Korea’s economic rise through efficient developments in energy and…

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     Summary of the Lodi District Heating System View Lodi District Heating System | Lodi, Italy Lodi is an Italian city of 45,000 inhabitants located 25km southeast of Milan. District Heating…

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    Summary of the JSC Litesko Project View JSC “Litesko” Project in Alytus, Lithuania To ensure sustainable and environmentally friendly heat production and supply – Power plant station was…

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  Summary Helsinki Combined Heating & Cooling System View Helsinkis Combined Heating and Cooling System Combined District Heating and Cooling – Quality of life with globally exceptional and eco-efficient district cooling In Helsinki, the…

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       Summary of the Lusail District Energy System View Lusail District Energy System The district cooling system in Lusail will reduce 50% of the CO2 emissions that would come from conventional…

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    Summary of the HafenCity East System View HafenCity East Sustainable District Heating System Hamburg’s HafenCity is currently the largest inner-city development project in Europe. A former harbour industrial area…

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     “EEQ2” new heating & power station connected to building and district network  View EEQ2 System The “EEQ2” project is an initiative from the energy provider of the city of Görlitz,…

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      Summary of the “Hungerkamp” System View Hungerkamp heating & power station connected to a 4 km small district heating network  The “Hungerkamp” project is an innovative initiative led by…

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      Summary of the Käenoja heating plant and Toijala network System View Käenoja Heating Plant and Toijala District Heating Network Caligo technology innovation combines effectively traditional wet scrubbing methods with…

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                 Summary of the district heating to ships system View District Heating to Ships The Stena Line-owned passenger ship Stena Danica is the first ship…

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       Summary of the Deep Geothermal Energy System View Deep Geothermal Energy | Kirchweidach, Germany In the municipality of Kirchweidach in Germany, since 2013 vegetables are being produced sustainably and…

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         Summary of the Milan District heating system View Milan District Heating System Milan is a global city with points of excellence in different fields, from business to…

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       Summary of the KJKP Toplane Sarajevo system View KJKP Toplane Sarajevo District Heating system Cantonal Public Utility Company KJKP Toplane – Sarajevo is the largest district heating…

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  Summary of the AECC map View Interactive Actual Energy Consumption Map The interactive map of the Actual Energy Consumption Class (AECC) is a tool to stimulate the population in…

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        Summary of the Dall Energy Biomass System View Dall Energy Biomass System The Dall Energy biomass furnace combines updraft gasification and gas combustion. Hereby several advantages are…

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We have found a tremendous interest in our District Energy Sharing System (DESS) from around the world. So far we have accumulated Awards from organizations such as the Canadian Association of Consulting Engineers (ACEC), the Non-Oil and Gas Energy Infrastructure Project Canada, the Community Energy Association (CEA)

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Veolia Energy Philadelphia’s Green Steam Conversion reflects extensive infrastructure upgrades at the Philadelphia district network, which simultaneously increased our operating efficiency and reduced our environmental impact, benefiting the 500+ buildings (100 million sq. ft. of space) on Philadelphia’s 41 miles of district energy network.

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The Stanford Energy System Innovations (SESI) project is a $438 million major transformation of the campus district energy system. The transformation is from gas fired combined heat and power with steam distribution to electrically powered combined heat and cooling with hot water distribution. When completed in April 2015, the new heat recovery system will be 52% more efficient than the existing cogeneration system

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Test system design and measurements of the thermal conductivity for composite pipesA significant fraction of human energy consumption is used for heating purposes thus efficient and durable insulation is a necessity. Although different materials have been used to insulate district heating pipes over the last decades only few studies have been conducted on the long-term aging effects.

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Before heating season 2009/10. PUC “Beogradske elektrane” burns up to 10.000 tons of coal per year. Besides high emissions of SO2, CO, NOx and particulates there is a serious problem of ground contamination with coal and ash during transport, handling and storage. This is another important reason for introduction biomass in coal fuelled boilers and thus further decreasing the consumption of coal and introduction of renewable.

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The EnergyPLAN model is an advanced energy systems analysis model, which allows for the analysis of complete energy systems of a town, a country or the whole of Europe including future sustainable energy systems.The model has been used to identify the role of district heating and cooling in present and future energy systems showing the benefits of including district energy.

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Improvements of the local environment and a positive effect on the climate due to reduced CO2 emissions are two important results of this project created by an equal partnership between Grundfos and Bjerringbro Varmeværk (DH Company). A third result is a reduction of the annual fuel costs.

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The major challenges that face any district cooling provider are to operate the chiller systems with the highest achievable efficiency, minimize water wastage and reduce the cost of operation.This documentation was prepared to demonstrate how the conversion from the usage of potable or domestic water in district cooling plants into alternative water sources

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UK firm Star Refrigeration has launched a groundbreaking renewable energy heating system, which will heat homes and businesses across an entire city in Norway.The Glasgow-based cooling solutions specialist, with Norwegian refrigeration partner Norsk Kulde, has just sold its first Neatpump to the city of Drammen.

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The subject of our application is a district cooling system in the city of Velenje, Slovenia. There the cooling energy is produced in absorption chillers. The heat for their operation is supplied from an existing district heating system. In it the supply temperatures are sufficient to power the absorption chillers through the whole year, due to industry consumers.

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The Co-Op City complex is a housing cooperative located in Bronx, NY, originally constructed in 1973. The complex includes 15,372 units located in over 35 buildings, and houses approximately 60,000 residents. In 2007, the cooperative board began the process of upgrading the site’s outdated central heating plant to a combined heat and power plant

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For 130 years, Con Edison has had the privilege of being the energy service of choice to many of New York’s most prominent and unique properties. The Company’s plan is to continue to provide Steam Service to customers by maintaining the current high reliability and operational excellence on production and distribution,

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The Microturbine produces in cogeneration system high-efficiency power (0.4/50 Hz) and heat from exhaust gas using natural gas as fuel. In the case of natural gas supplied from the distribution networks, it is necessary to mount a compressor downstream of the microturbine to ensure the minimum required pressure of 5.2 bar.

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By an ambitious environmental plan and a cooperation between local industries and the municipality we have created a win-win district heating scheme.We have substituted fossil oil equivalent to 50GWh by local surplus heat from a local pulp and paper industry

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Integration is the hallmark of District Energy St. Paul’s system. From its inception, District Energy St. Paul envisioned a future that used district heating and cooling infrastructure to integrate a variety of local, renewable energy sources and technologies. District Energy has doubled the amount of buildings served from 1985, yet is producing less carbon thanks to the incorporation of biomass, CHP, and solar.

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Cornell Combined Heat and Power

In 2009, Cornell University released the Climate Action Plan, which sets a goal of reducing campus net greenhouse gas emissions to zero by 2050. One of the biggest roadblocks to climate neutrality is coal. Historically, Cornell University burned nearly 60,000 metric tons of coal for campus heating. Cornell’s Beyond Coal Initiative was launched in 2010.

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Princess Noura University for Women

Implementation of a large scale solar thermal district application to provide for space heating and hot water needs of the Princess Nora University for Women in Saudi Arabia (PNUW). The University Campus has to supply 40.000 students, 13 faculties, lecturers and university personnel, dormitories, research facilities and a gymnasium.

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