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Published byTobias Kennedy Modified over 8 years ago
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Developing a spatial- and technology - policy to provide domestic comfort to the urban inhabitants of North Western Europe Karel Mulder,
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Problem climate change, 3-5 ˚C until 2100 urban heat islands, up to 7 ˚C warmer Enhanced urban heat effect, 1 ˚C
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More heat waves Increased mortality Airconditioners are introduced where they were not used thusfar: Summer peak in electricity: Problem: cooling water for power stations
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Options at various levels 1.City planning: cooling effect of parks, rivers, lakes, canals 2.Neighbourhoods: trees, ponds, road (materials) 3.Buildings: roofs, (vegetation/reflection/hot water production), construction, orientation, insulation, materials 4.Sustainable Cooling: -geothermal cold (energy balance), efficient heat exchangers -Waste heat for cooling? Absorption chillers.
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The outline of a research program
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Heat absorption cooling: A win-win-win situation? Industry: ban on cooling water discharge if water temperatures exceed 28˚C Utilities: no new demand peak in electricity Consumers: ? All: less CO 2
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A Lock in? Barriers? Sufficiency of passive measures? What if industry has less waste heat in future? A centralized cooling grid in combination with aquifers or sea water? Will there be efficient, smaller scale absorption coolers?
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