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Beernink, S.T.W. (author), Hartog, Niels (author), Vardon, P.J. (author), Bloemendal, Martin (author)
The technical and economic success of an Aquifer Thermal Energy Storage (ATES) system depends strongly on its thermal recovery efficiency, i.e. the ratio of the amount of energy that is recovered to the energy that was injected. Typically, conduction most strongly determines the thermal recovery efficiency of ATES systems at low storage...
journal article 2023
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Ramos-Escudero, A. (author), Bloemendal, Martin (author)
Aquifer Thermal Energy Storage (ATES) Systems is a technology to sustainably and economically provide space heating and cooling. However, it cannot be applied everywhere because successful application depends on the presence of a suitable aquifer and favorable climatic conditions. Despite some operational ATES systems, the Spanish ATES market...
journal article 2022
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van der Schans, M.L. (author), Bloemendal, Martin (author), Robat, Niels (author), Oosterhof, Ate (author), Stuyfzand, Pieter Jan (author), Hartog, Niels (author)
Larger well diameters allow higher groundwater abstraction rates. But particularly for the construction of wells at greater depth, it may be more cost-efficient to only expand the borehole in the target aquifer. However, current drilling techniques for unconsolidated formations are limited by their expansion factors (<2) and diameters (&lt...
journal article 2022
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van Esch, M.S. (author), Bloemendal, Martin (author), Hartog, Niels (author), Vardon, P.J. (author)
Aquifer Thermal Energy Storage (ATES) is mostly used to store heat and cold in groundwater at relatively low temperatures for heating and cooling buildings. These systems emit 3-4 times less CO2 when compared to gas heating, but still require substantial amounts of electricity to run due to the use of a heat pump ( 60%). In typical ATES systems...
abstract 2022
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Beernink, S.T.W. (author), Bloemendal, Martin (author), Kleinlugtenbelt, Rob (author), Hartog, Niels (author)
Low temperature (<25 °C) Aquifer Thermal Energy Storage (ATES) systems have a world-wide potential to provide low-carbon space heating and cooling for buildings by using heat pumps combined with the seasonal subsurface storage and recovery of heated and cooled groundwater. ATES systems increasingly utilize aquifer space, decreasing the...
journal article 2022
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Chicco, Jessica Maria (author), Antonijevic, Dragi (author), Bloemendal, Martin (author), Cecinato, Francesco (author), Goetzl, Gregor (author), Hajto, Marek (author), Hartog, Niels (author), Mandrone, Giuseppe (author), Vacha, Damiano (author), Vardon, P.J. (author)
For efficient operation of heating and cooling grids, underground thermal energy storage (UTES) can be a key element. This is due to its ability to seasonally store heat or cold addressing the large mismatch between supply and demand. This technology is already available and there are many operational examples, both within and outside a...
conference paper 2022
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Bloemendal, Martin (author), van Esch, M.S. (author), Vardon, P.J. (author), Pape, J. J. (author), Hartog, N. (author)
Governments and companies have set high targets in avoiding CO2 emissions and reducing energy. Aquifer Thermal Energy Storage (ATES) systems can contribute by overcoming the temporal mismatch between the availability of sustainable heat (during summer) and the demand for heat (during winter). Therefore, ATES is an increasingly popular...
journal article 2022
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Bloemendal, Mick (author)
By conducting co-creation workshops using digital games together with expert interviews a well-considered redesign of the Prinsenhof Museum ensemble in Delft was made. The new design consists of a new, partly underground museum together with a cultural hub of Delft.
master thesis 2021
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Duijff, R. (author), Bloemendal, Martin (author), Bakker, M. (author)
Aquifer thermal energy storage (ATES) is an energy efficient technique to provide heating and cooling to buildings by storage of warm and cold water in aquifers. In regions with large demand for ATES, ATES adoption has lead to congestion problems in aquifers. The recovery of thermal energy stored in aquifers can be increased by reducing the...
journal article 2021
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de Bruijn, E.A. (author), Bloemendal, Martin (author), ter Borgh, M.M. (author), Godderij, R.R.G.G. (author), Vossepoel, F.C. (author)
Geothermal operations are expanding and increasingly contributing to the current energy supply. Assessing the long-term operable lifetime of these projects is complicated as the reservoirs they produce from are often deep and subsurface properties are uncertain and spatially variable. The minimum lifetime of a geothermal project usually...
journal article 2021
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van der Roest, E. (author), Beernink, S.T.W. (author), Hartog, Niels (author), van der Hoek, J.P. (author), Bloemendal, Martin (author)
In the energy transition, multi-energy systems are crucial to reduce the temporal, spatial and functional mismatch between sustainable energy supply and demand. Technologies as power-to-heat (PtH) allow flexible and effective utilisation of available surplus green electricity when integrated with seasonal heat storage options. However, insights...
journal article 2021
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van der Roest, E. (author), Fens, T.W. (author), Bloemendal, Martin (author), Beernink, S.T.W. (author), van der Hoek, J.P. (author), van Wijk, A.J.M. (author)
The fossil-based energy system is transitioning towards a renewable energy system. One important aspect is the spatial and temporal mismatch between intermitted supply and continuous demand. To ensure a reliable and affordable energy system, we propose an integrated system approach that integrates electricity production, mobility, heating of...
journal article 2021
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de Martino, M. Teresa (author), Tonin, F. (author), Bloemendal, Victor R.L.J. (author), Hanefeld, U. (author), Rutjes, Floris P.J.T. (author), van Hest, Jan C.M. (author)
A new immobilization strategy using compartmentalized nanoreactors is herein reported for two biocatalytic processes: (1)N-acetylneuraminate lyase (NAL) is internalized in NAL-c-CLEnAs and used in a continuous flow aldol condensation ofN-acetyl-d-mannosamine with sodium pyruvate toN-acetylneuraminic acid; (2) two hydroxysteroid dehydrogenases...
journal article 2021
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Mindel, Julian E. (author), Alt-Epping, Peter (author), Landes, Antoine Armandine Les (author), Beernink, S.T.W. (author), Birdsell, Daniel T. (author), Bloemendal, Martin (author), Hamm, Virginie (author), Lopez, Simon (author), Nielsen, Carsten M. (author)
In order to assess the thermo-hydraulic modelling capabilities of various geothermal simulators, a comparative test suite was created, consisting of a set of cases designed with conditions relevant to the low-enthalpy range of geothermal operations within the European HEATSTORE research project. In an effort to increase confidence in the...
journal article 2021
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Fleuchaus, Paul (author), Schüppler, Simon (author), Bloemendal, Martin (author), Guglielmetti, Luca (author), Opel, Oliver (author), Blum, Philipp (author)
The storage of heat in aquifers, also referred to as Aquifer Thermal Energy Storage (ATES), bears a high potential to bridge the seasonal gap between periods of highest thermal energy demand and supply. With storage temperatures higher than 50 °C, High-Temperature (HT) ATES is capable to facilitate the integration of (non-)renewable heat...
journal article 2020
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Hoekstra, N. (author), Pellegrini, M. (author), Bloemendal, Martin (author), Spaak, G. (author), Andreu Gallego, A. (author), Rodriguez Comins, J. (author), Grotenhuis, T. (author), Picone, S. (author), Murrell, A. J. (author)
Heating and cooling using aquifer thermal energy storage (ATES) has hardly been applied outside the Netherlands, even though it could make a valuable contribution to the energy transition. The Climate-KIC project “Europe-wide Use of Energy from aquifers” – E-USE(aq) – aimed to pave the way for Europe-wide application of ATES, through the...
journal article 2020
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Bloemendal, Martin (author), Hartog, Niels (author), Beernink, Stijn (author)
poster 2019
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Picone, S. (author), Bloemendal, Martin (author), Pellegrini, M. (author), Hoekstra, N. (author), Andreu Gallego, A. (author), Rodriguez Comins, J. (author), Murrel, A. (author)
Aquifer Thermal Energy Storage (ATES) system make use of the groundwater to exchange energy with the building: in winter, groundwater is pumped from the warm well to the buildings heat exchanger and the building extracts heat from the groundwater as energy source for the heat pumps, while the groundwater will be injected in the cold well at...
conference paper 2019
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Beernink, Stijn (author), Hartog, Niels (author), Bloemendal, Martin (author), van der Meer, Marlous (author)
Energy consumption for space heating and cooling of buildings can be decreased by 40-80% by use of Aquifer Thermal Energy Storage (ATES). ATES is a proven technique, however, it is not known how efficient currently operating systems are recovering stored energy from the subsurface and how this can be determined with available data. Recent...
conference paper 2019
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Bloemendal, Martin (author), Beernink, Stijn (author), Hartog, Niels (author), van Meurs, Bart (author)
Aquifer Thermal Energy Storage (ATES) systems combined with a heat pump save energy for space heating and cooling of buildings. In most countries the temperature of the stored heat is allowed up to 25-30°C. However, when heat is available at higher temperatures (e.g. waste heat, solar heat), it is more efficient to store higher temperatures...
conference paper 2019
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