13. andré de herde shc - solar heating and cooling

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1 Strasbourg A. De Herde 21.11.2011 IMPLEMENTING AGREEMENT DAY BELGIUM Solar Heating and Cooling A. De Herde

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SHC Solar Heating and Cooling Implementing Agreement

Transcript of 13. andré de herde shc - solar heating and cooling

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Strasbourg A. De Herde 21.11.2011

IMPLEMENTING AGREEMENT DAY BELGIUM

Solar Heating and Cooling

A. De Herde

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Solar Heating and Cooling (www.iea-shc.org)

1. Members

2. Objective and benefits

3. Current Tasks

4. Completed Tasks

5. Others

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1. Members - 19 countries and the EU

The Solar Heating and Cooling Programme was established in 1977, one of the first programmes of the IEA.

Austr., Austria, B, C, DK, Finland, Fr, Germany, It, Mexico, NL,Norway, Port., Spain, Sweden, CH, US, European Union

New members: Singapore and South Africa

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2. Objective and benefits

The 20 members have been collaborating to advance active solar, passive solar and photovoltaic technologies and their application in buildings.(réf.: Solar Heat Worldwide - Markets and Contribution to the Energy Supply 2009 - Werner Weiss and Franz Mauthner)

The benefits are,- accelerates the pace of technology development,- promotes standardization- enhances national R&D programs- saves time and money

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3. Current Tasks (13)

TASK 36 Solar Resource Knowledge ManagementTASK 38 Soalr Air-Conditionning and RefrigerationTASK 39 Polymeric Materials for Solar Thermal ApplicationsTASK 40 Net Zero Energy Solar BuildingsTASK 41 Solar Energy and ArchitectureTASK 42 Compact Thermal Energy StorageTASK 43 Solar Rating and Certification ProceduresTASK 44 Solar and Heat PumpsTASK 45 Large SystemsTASK 46 Solar Resource Assessment and ForecastingTASK 47 Solar Renovation of Non-Residential BuildingsTASK 48 Quality Assurance and Support Measures for Solar CoolingTASK 49 Solar Heat Integration in Industrial Processes

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TASK 39 Polymeric Materials for Solar Thermal Applications*

Els De Meersman - industry participant - Chevron Philips Chemicals

The objective of the Task is the assessment of the applicability and the cost reduction potential by using polymeric materials and polymer based novel designs of suitable solar thermal systems.

Subtask A: InformationSubtask B: CollectorsSubtask C: Materials

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TASK 40 Net Zero Energy Solar Buildings

Roel De Coninck - 3EShady Attia - Architecture et climat - UCLKatrien Biesbroeck- KaHo Sint-LievenErwin Mlecnik - PHP

The objective of the Task is to study current net-zero, near net-zero and very low energy buildings and to develop a common understanding, a harmonized international definitions framework, tools, innovative solutions and industry guidelines.

Subtask A: Definitions and large-scale implicationsSubtask B: Design process toolsSubtask C: Advanced building design, technologies and engineeringSubtask D: Dissemination

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TASK 41 Solar Energy and Architecture

Catherine Massart - Architecture & Climat - UCL

The main goals of the Task are to help achieving high quality architecture for buildings integrating solar energy systems, as wall as improving the qualifications of the architects.

Subtask A: Criteria for architectural integrationSubtask B: Method and toolsSubtask C: Concepts, case studies and guidelines

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TASK 42 Compact Thermal Energy Storage

Johan Van Bael - VITO

The overall objective of the task is to develop advanced materials and systems for the compact storage of thermal energy.

Subtask A: Material Engineering / ProcessingSubtask B: Test and CharacterizationSubtask C: Numerical ModelingSubtask D: Apparatus / Components

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TASK 44 Solar and Heat Pumps

Filip Van der Schoor - Lessius Mechelen Campus De NayerDavid Winterschoven - Lessius Mechelen Campus De Nayer

The objective of the task is the assessment of performances and relevance of combined systems using solar thermal and heat pumps to contribute to successful market penetration.

Subtask A: Solutions and Generic systemsSubtask B: Performance assessmentSubtask C: Modeling and simulationsSubtask D: Dissemination and market support

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TASK 47 Solar Renovation of Non-Residential Buildings

Sophie Trachte - Architecture & Climat - UCL - Subtask Leader DWouter Hilderson - PHP

The objectives are :- develop a solid knowledge base on how to renovate non-residential buildings towards the NZEB standards in a sustainable and cost efficient way- identify the most important market and policy issues for such renovations

Subtask A: Advanced exemplary projectsSubtask B: Market and policy issuesSubtask C: Assessment of technical solutionsSubtask D: Environmental and health impact assessment

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4. Completed tasks (9)

TASK 8 Passive and Hybrid Solar Low Energy BuildingTASK 11 Passive and Hybrid Solar Commercial BuildingsTASK 13 Advance Solar Low Energy BuildingsTASK 18 Advanced Glazing Materials for Solar ApplicationsTASK 20 Solar Energy in Building RenovationTASK 21 Daylight in BuildingsTASK 28 Solar Sustainable HousingTASK 31 Daylighting Buildings in the 21st CenturyTASK 37 Advanced Housing Renovation with Solar & Conservation

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5. Others

5.1. Solar update - newsletter of the IEA - SHcP

For example : vol 54 - july 2011

- Solar Thermal Generates 196 GWth / 280 million square meters of collector in the world- New Method to Calculate Solar Thermal Output- Task 38 report

5.2. SHC Annual Report

5.3. Solar Heating and Cooling Conference 2012July 9-11 San Francisco

5.4. SHC Solar Award since 2003