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2020 | OriginalPaper | Chapter

8. Methods and Tools for Urban Energy Planning

Authors : Giuliano Dall’O’, Simone Ferrari

Published in: Green Planning for Cities and Communities

Publisher: Springer International Publishing

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Abstract

Cities are responsible for around 70% of global energy demand and are considered as having a crucial role in effective abatement of global energy consumptions. The topic is largely discussed in available literature, which reveals the great diversity of applied approaches and the necessity to move towards the concept of smart energy systems, focussing on synergies among different energy sectors. However, considering the large share of responsibility of the building sector, this chapter focussed on related energy demand assessment. After an initial introduction, which spotlights the most complex elements, the chapter presents some methods of analysis to evaluate the energy performance of the existing building stocks. Subsequently an overview is presented of the methods and tools for determining the energy demand of buildings within urban energy planning, paying particular attention to those that rely on hourly profiles. The assessment of hourly energy demand of the existing building stock, as well as the prediction of its variation due to energy efficiency measures, are fundamental activities for planning strategies of distributed generation, district heating and/or cooling networks, renewables integration, energy storages, etc., all necessary in moving towards smart energy districts.

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Footnotes
1
The According to ISTAT, the Italian national census of population and housing (accessed on September 2019), in Lombardy there are about 4,827,000 apartments; considering that in the energy cadastre of Lombardy Region (accessed on September 2019) there are about 2,067,000 EPCs, 43% of the existing residential building stock is certificated.
 
3
http://​www.​osemosys.​org/​. Accessed 27 September, 2019.
 
6
http://​www.​emd.​dk. Accessed 27 September, 2019.
 
7
 
8
http://​www.​energyplan.​eu/​. Accessed 27 September, 2019.
 
Literature
go back to reference Connolly D, Hansen K, Drysdale D (2015) STRATEGO creating national energy models for 2010 and 2050 work package 2—background report 1 Connolly D, Hansen K, Drysdale D (2015) STRATEGO creating national energy models for 2010 and 2050 work package 2—background report 1
go back to reference Dall’O’ G, Galante A, Torri M (2011) A methodology for the energy performance classification of residential building stock on an urban scale. Energy Build 48:211–219CrossRef Dall’O’ G, Galante A, Torri M (2011) A methodology for the energy performance classification of residential building stock on an urban scale. Energy Build 48:211–219CrossRef
go back to reference Dall’O’ G, Sarto L, Sanna N, Tonetti V, Ventura M (2015) On the use of an energy certification database to create indicators for energy planning purposes: application in northern Italy. Energy Policy 85:207–217CrossRef Dall’O’ G, Sarto L, Sanna N, Tonetti V, Ventura M (2015) On the use of an energy certification database to create indicators for energy planning purposes: application in northern Italy. Energy Policy 85:207–217CrossRef
go back to reference Dufo-López R (2017) iHOGA version 2.4 user’s manual. University of Zaragoza, Spain Dufo-López R (2017) iHOGA version 2.4 user’s manual. University of Zaragoza, Spain
go back to reference EC (2002) Directive 2002/91/EC of the European Parliament and of the Council of 16 December 2002 on the energy performance of buildings EC (2002) Directive 2002/91/EC of the European Parliament and of the Council of 16 December 2002 on the energy performance of buildings
go back to reference EMD International A/S (2017) User’s guide—energyPRO EMD International A/S (2017) User’s guide—energyPRO
go back to reference European Committee for Standardizing (2008) CEN 15603, energy performance of buildings. Overall energy use and definition of energy ratings European Committee for Standardizing (2008) CEN 15603, energy performance of buildings. Overall energy use and definition of energy ratings
go back to reference Ferrari S, Zagarella F (2016) Assessing buildings hourly energy needs for urban energy planning in southern European context. Procedia Eng 161:783–791CrossRef Ferrari S, Zagarella F (2016) Assessing buildings hourly energy needs for urban energy planning in southern European context. Procedia Eng 161:783–791CrossRef
go back to reference Ferrari S, Zanotto V (2016a) Defining representative building energy models. Building energy performance assessment in southern Europe. SpringerBriefs in applied sciences and technology. Springer, Cham, pp 61–77CrossRef Ferrari S, Zanotto V (2016a) Defining representative building energy models. Building energy performance assessment in southern Europe. SpringerBriefs in applied sciences and technology. Springer, Cham, pp 61–77CrossRef
go back to reference Ferrari S, Zanotto V (2016b) Climate-related assessment of building energy needs. Building energy performance assessment in southern Europe. SpringerBriefs in applied sciences and technology. Springer, Cham, pp 99–118CrossRef Ferrari S, Zanotto V (2016b) Climate-related assessment of building energy needs. Building energy performance assessment in southern Europe. SpringerBriefs in applied sciences and technology. Springer, Cham, pp 99–118CrossRef
go back to reference Ferrari S, Zanotto V (2016c) Implications of the assumptions in assessing building thermal balance. Building energy performance assessment in southern Europe. SpringerBriefs in applied sciences and technology. Springer, Cham, pp 35–45CrossRef Ferrari S, Zanotto V (2016c) Implications of the assumptions in assessing building thermal balance. Building energy performance assessment in southern Europe. SpringerBriefs in applied sciences and technology. Springer, Cham, pp 35–45CrossRef
go back to reference Ferrari S, Zagarella F, Caputo P, D’Amico A (2019a) Results of a literature review on methods for estimating buildings energy demand at district level. Energy 175:1130–1137CrossRef Ferrari S, Zagarella F, Caputo P, D’Amico A (2019a) Results of a literature review on methods for estimating buildings energy demand at district level. Energy 175:1130–1137CrossRef
go back to reference Ferrari S, Zagarella F, Caputo P, Bonomolo M (2019b) Assessment of tools for urban energy planning. Energy 176:544–551CrossRef Ferrari S, Zagarella F, Caputo P, Bonomolo M (2019b) Assessment of tools for urban energy planning. Energy 176:544–551CrossRef
go back to reference Fraunhofer Institute for Building Physics IBP (2013) Manual district energy concept adviser Fraunhofer Institute for Building Physics IBP (2013) Manual district energy concept adviser
go back to reference HOMER Energy (2016) HOMERPro version 3.7—user manual. Boulder, USA HOMER Energy (2016) HOMERPro version 3.7—user manual. Boulder, USA
go back to reference Howells M, Rogner H, Strachan N, Heaps C, Huntington H, Kypreos S, Hughes A, Silveira S (2011) OSeMOSYS: The Open Source Energy Modeling System. An introduction to its ethos, structure and development. Energy Policy 39:5850–5870CrossRef Howells M, Rogner H, Strachan N, Heaps C, Huntington H, Kypreos S, Hughes A, Silveira S (2011) OSeMOSYS: The Open Source Energy Modeling System. An introduction to its ethos, structure and development. Energy Policy 39:5850–5870CrossRef
go back to reference International Organization for Standardization (2008) ISO 13790, energy performance of buildings—calculation of energy use for space heating and cooling International Organization for Standardization (2008) ISO 13790, energy performance of buildings—calculation of energy use for space heating and cooling
go back to reference Khayatian F, Sarto L, Dall’O’ G (2016) Application of neural networks for evaluating energy performance certificates of residential buildings. Energy Build. 125:45–54CrossRef Khayatian F, Sarto L, Dall’O’ G (2016) Application of neural networks for evaluating energy performance certificates of residential buildings. Energy Build. 125:45–54CrossRef
go back to reference Klein SA, Beckman WA, Mitchell JW et al (2014) TRNSYS—a transient system simulation program user manual. The Solar Energy Laboratory, University of Wisconsin, Madison Klein SA, Beckman WA, Mitchell JW et al (2014) TRNSYS—a transient system simulation program user manual. The Solar Energy Laboratory, University of Wisconsin, Madison
go back to reference Lund H (2017) EnergyPLAN. Advanced energy systems analysis computer model. Documentation version 13 Lund H (2017) EnergyPLAN. Advanced energy systems analysis computer model. Documentation version 13
go back to reference Stadler M, Marnay C, Cardoso G, Donadee J, Siddiqui A, Wang S, Feng W, Lai J, Bhattacharya P, Mégel O, Groissböck M, Yu-Ko C (2013) WebOpt user manual. DER Web Optimization Service (WebOpt), Lawrence Berkeley National Laboratory (LBNL), pp 1–32 Stadler M, Marnay C, Cardoso G, Donadee J, Siddiqui A, Wang S, Feng W, Lai J, Bhattacharya P, Mégel O, Groissböck M, Yu-Ko C (2013) WebOpt user manual. DER Web Optimization Service (WebOpt), Lawrence Berkeley National Laboratory (LBNL), pp 1–32
go back to reference Swan LG, Ugursal VI (2009) Modeling of end-use energy consumption in the residential sector: a review of modeling techniques. Renew Sustain Energy Rev 13(8):1819–1835CrossRef Swan LG, Ugursal VI (2009) Modeling of end-use energy consumption in the residential sector: a review of modeling techniques. Renew Sustain Energy Rev 13(8):1819–1835CrossRef
go back to reference U.S. Department of Energy (2018) EnergyPlus version 8.9.0 documentation U.S. Department of Energy (2018) EnergyPlus version 8.9.0 documentation
Metadata
Title
Methods and Tools for Urban Energy Planning
Authors
Giuliano Dall’O’
Simone Ferrari
Copyright Year
2020
DOI
https://doi.org/10.1007/978-3-030-41072-8_8