Solar Thermal Energy for Cooling Applications and Industrial Process Heat
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1 Energy Solar Thermal Energy for Cooling Applications and Industrial Process Heat Olivier Drücke President of ESTIF, Belgium Sales Director at XOLAR Group, Germany
2 Taping the SOLAR POTENTIAL
3 Final energy consumption in the EU 31% 20% electricity heating & cooling transport 49%
4 Potential of Solar Thermal in Europe Heating & Cooling Demand Solar Heat Source: Potential of Solar Thermal in Europe, ESTIF, 2009
5 4 strategies needed to develop the full potential of ST 1. The number of solar thermal systems has to be sharply increased 2. The share of solar thermal energy per building has to be increased step-by-step up to 100% 3. ST has to be introduced in new market segments like public buildings and the commercial sector 4. New ST applications have to be developed like solar assisted cooling, district and process heating
6 Solar Heat for Cooling / Air Conditioning
7 Solar Radiation and required Cooling Load Coincidence of radiation & cooling load demand Solar coolers are Peak-shavers!
8 Air Conditioning Market Share of various Systems
9 Solar Assisted Cooling (SAC) Total Market & Potential
10 Total installed Solar Cooling Systems in Europe / World Solar cooling is a sustainable alternative to conventional electrically driven split-units (compressor chillers) Solar collectors are combined with sorptionchillers that use environmentally friendly refrigerants (ammonium/water) Low power demand and operation costs, Low CO2 Yearly Growth 40-70%
11 Market share of solar driven chillers 14% 2% 13% 71% Absorption chillers Adsorption chillers DEC systems LDAC systems DEC: Desiccant and Evaporative Cooling LDAC: Liquid Desiccant Air-conditioning
12 Solar Assisted Cooling (SAC) - From Solar Radiation to Air Conditioning
13 Solar Assisted Cooling (SAC) - Heat-driven Chillers
14 Solar Assisted Cooling (SAC) - Open Systems
15 Solar Assisted Cooling (SAC) - Absorption System (LiBr)
16 Solar Assisted Cooling (SAC) - Absorption System
17 Solar Assisted Cooling (SAC) - Absorption System (with ETC s)
18 Solar Assisted Cooling (SAC) - Handbook for Planners
19 Solar Heat for Industrial Processes
20 Heat Demand by Sector EU 25 in 2004 Heat Demand by Sector - EU 25 in 2004 Industry 31% Households 46% Commerce, Service 23% Source: AEBIOM, European Biomass Statistics 2007
21 Industrial heat demand by temperature level and industrial sector 100% 80% 60% 40% 20% Above 400 C C Below 100 C 0% Mining and Quarrying Food and Tobacco Pulp & paper Chemical Non-Metallic Minerals Basic Metals Machinery Transport Equipment Others Source: ECOHEATCOOL
22 Processes and Temperature Levels Industrial Sector Process Temperature Level [ C] Food and Beverages Textile Industry Drying Washing Pasteurizing Boiling Sterilizing Heat Treatment Washing Bleaching Dyeing Chemical Industry All Sectors Boiling Distilling Various chem. Processes Pre-heating of Boiler Feedwater Heating of Factory Buildings
23 ST Process Heat Applications Space heating of industrial buildings Low- and medium temperature heat for industrial processes Water treatment (e.g. Sea water desalination) Refrigeration and cooling
24 90 operating Solar Thermal Plants for process heat are reported worldwide, with a total capacity of about 25 MW th (35,000 m²).
25 Potential Studies on Solar Process Heat ST Potential (PJ) Potential in PJ % Austria Spain Portugal Italy Netherlands 5% 4% 3% 2% 1% 0% ST potential/heat demand Source: IEA SHC Task 33, R. Battisti, C. Vannoni
26 Potential of Solar Heat in the European Industry Country Industrial final energy consumption in 2002 [PJ/year] Industrial heat demand in 2002 [PJ/year] Solar process heat potential [PJ/year] Solar heat on industrial heat demand [%] Solar process heat potential [Mio m 2 ] Solar process heat potential [GW] Austria Spain Portugal Italy Netherlands ] Germany EU EU
27 Process Heat Collectors: Advanced Flat Plate Collectors Double-glazed, flat-plate collector with anti-reflective glass. The space between the glass panes is filled with an inert gas to reduce the heat conductivity. Source: IEA SHC Task 33
28 Process Heat Collectors: CPC Collectors Concentration: 1,8x Efficiency n Temperature difference T_Coll_mid - T_Amb [K] Air 1 bar Air 0,01 bar Krypton 0,01bar LoCo EvaCo (Low concentrating evacuated flat collector), ZAE Bayern
29 Process Heat Collectors: Fresnel Collector Mirroxx GmbH Germany Aperture area: 88 m² Working temperature: max. 200 C
30 Space Heating of Factory Buildings with facade collectors
31 Solar car wash plant, Köflach, Austria Installed capacity: 30 kw th (43 m² flat plate collector)
32 Washing Process CONTANK, Barcelona Installed Capacity: 357 kw th (510 m²) 40 m³
33 Beverage Industry Bottle Washing
34 Bavarian brewery Lammsbräu Drying of malt Continuous heat demand during the whole year Temperatures up to 60 C provided by the covered air collectors 72.5 m 2 collector area
35 drying of green forage in Italy Storage of the forage bales is easier Higher quality of the forage Improvement of proteine in the forage Collector area: 40 m 2
36 Seawater Desalination Gran Canaria, Spain Membrane Distillation 70 kw th anti-reflective double glazed flat plate collector Annual useful solar heat: 89 MWh/a Anual specific useful solar heat: 1271 kwh/kw*a Solar fraction: 100% Fraunhofer ISE, Germany
37 El NASR Pharmaceutical Chemicals, Egypt Installed Capacity: 1,33 MW th (1900 m² Parabolic Trough Collectors) Steam: 1,3 t/hr / 170 C, 7,5 bar Source: FICHTNER SOLAR GmbH
38 Further Information
39 Thanks for your kind attention!
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