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  5. Investigation of demand response strategies in a mixed use building
 
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Investigation of demand response strategies in a mixed use building

Author(s)
Christantoni, Despoina  
Oxizidis, Simeon  
Flynn, Damian  
Finn, Donal  
Uri
http://hdl.handle.net/10197/8141
Date Issued
2016-05-25
Date Available
2016-11-21T17:32:27Z
Abstract
This paper investigates demand response measures, using an EnergyPlus simulation model, developed specifically for demand response analysis, in a mixed-used commercial building. The effectiveness of various building pre-conditioning strategies, which were considered for different durations, immediacy and activation time were assessed using the simulation model. Assessment was carried out for a representative summer day and the contribution of the building capacitance as a mechanism for shifting the building electric power demand was evaluated, recording a maximum load reduction of 6.6% of the baseload.
Sponsorship
Higher Education Authority
Other Sponsorship
PRTLI
Type of Material
Conference Publication
Publisher
Department of Civil Engineering, Aalborg University
Subjects

Flexible energy deman...

Demand response

Building simulation m...

UCD Sport and Fitness...

Web versions
http://vbn.aau.dk/en/publications/clima-2016--proceedings-of-the-12th-rehva-world-congress(f66ed00a-82ec-4f39-a4e9-f943ef3b44ee).html
http://www.clima2016.org/welcome.aspx
Language
English
Status of Item
Peer reviewed
Journal
Heiselberg, P.K. (ed.). CLIMA 2016 - proceedings of the 12th REHVA World Congress: volume 2
Conference Details
CLIMA 2016: 12th REHVA conference, Aalborg, Denmark, 22-25 May 2016
ISBN
9788791606276
This item is made available under a Creative Commons License
https://creativecommons.org/licenses/by-nc-nd/3.0/ie/
File(s)
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Name

Clima_2016_DC_Final.pdf

Size

382.57 KB

Format

Adobe PDF

Checksum (MD5)

10df2dd1ad035bb104bd0c6e4fa6974f

Owning collection
Electrical and Electronic Engineering Research Collection
Mapped collections
Energy Institute Research Collection•
ERC Research Collection•
Mechanical & Materials Engineering Research Collection

Item descriptive metadata is released under a CC-0 (public domain) license: https://creativecommons.org/public-domain/cc0/.
All other content is subject to copyright.

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