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On the assessment of the energy performance and environmental behaviour of social housing stock for the adjustment between simulated and measured data: The case of mild winters in the Mediterranean climate of southern Europe.

Abstract

Current European energy policies stress the potential of housing stock retrofitting to reduce global energy consumption. In order to implement efficient measures, it is essential to know its real in-use energy behaviour. In southern Europe, social housing represents an important percentage of the residential stock built before the implementation of the first energy regulations. However, there are few studies specifically analysing their energy behaviour. Standardized use and occupancy patterns are not usually suited to Mediterranean social housing, and this mostly results in estimated consumption exceeding real consumption. This research aims to quantify the thermal comfort and energy consumption of the social housing stock during the characteristically mild winters in a Mediterranean climate, based on the monitoring of representative case studies from southern Spain. The results show that the dwellings analysed are far from conforming to adaptive comfort standard EN-15251 and yet, their limited local heating systems are rarely turned on, reducing the expected energy consumption. In addition, real use and occupancy patterns are defined for the case studies, allowing the development of energy simulation models that are better suited to the real behaviour of this social housing stock.

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On the assessment of the energy performance and environmental behaviour of social housing stock for the adjustment between simulated and measured data: The case of mild winters in the Mediterranean climate of southern Europe.

Author: Escandón Ramírez, Rocío; Suárez, Rafael; Sendra, Juan J.
Publisher: Elsevier
Year: 2017
DOI: 10.1016/j.enbuild.2017.07.063
Source: https://idus.us.es/bitstreams/2f03917b-b93d-4aa7-b767-fc3fae07fda0/download
1
1On he assessmen o he ene gy pe o mance and en i onmen al beha iou o
2social housing s ock o he adjus men be ween simula ed and measu ed da a: he
3case o mild win e s in he Medi e anean clima e o sou he n Eu ope.
4Rocío Escandón a,*, Ra ael Suá ez a, Juan José Send a a
5a Ins i u o Uni e si a io de A qui ec u a y Ciencias de la Cons ucción, Escuela Técnica Supe io de
6 A qui ec u a, Uni e sidad de Se illa, A . de Reina Me cedes 2, Se ille (41012), Spain.
7Abs ac
8 Cu en Eu opean ene gy policies s ess he po en ial o housing s ock e o i ing o educe global ene gy
9 consump ion. In o de o implemen e icien measu es, i is essen ial o know i s eal in-use ene gy
10 beha iou . In sou he n Eu ope, social housing ep esen s an impo an pe cen age o he esiden ial s ock
11 buil be o e he implemen a ion o he i s ene gy egula ions. Howe e , he e a e ew s udies speci ically
12 analysing hei ene gy beha iou . S anda dized use and occupancy pa e ns a e no usually sui ed o
13 Medi e anean social housing, and his mos ly esul s in es ima ed consump ion exceeding eal
14 consump ion.
15 This esea ch aims o quan i y he he mal com o and ene gy consump ion o he social housing s ock
16 du ing he cha ac e is ically mild win e s in a Medi e anean clima e, based on he moni o ing o
17 ep esen a i e case s udies om sou he n Spain. The esul s show ha he dwellings analysed a e a om
18 con o ming o adap i e com o s anda d EN-15251 and ye , hei limi ed local hea ing sys ems a e a ely
19 u ned on, educing he expec ed ene gy consump ion. In addi ion, eal use and occupancy pa e ns a e
20 de ined o he case s udies, allowing he de elopmen o ene gy simula ion models ha a e be e sui ed
21 o he eal beha iou o his social housing s ock.
22 Keywo ds: social housing s ock, moni o ing, he mal com o , ene gy consump ion, ene gy models
23 calib a ion.
* Co esponding au ho .
E-mail add ess: [email p o ec ed]
2
24 1. In oduc ion
25 O e he las ew decades, Eu opean building egula ions ha e been es ablishing a common amewo k
26 o he encou agemen o ene gy e iciency [1, 2], p omo ing he e o i ing o housing s ock. In he case
27 o sou he n Eu ope, esiden ial s ock buil p io o he i s egula ions which globally limi he ene gy
28 demand o buildings (1976-1979) ep esen s be ween 63 and 76% o he o al housing s ock [3, 4, 5].
29 Mos o hese esiden ial buildings do no inco po a e any speci ic measu es o he mal insula ion in hei
30 en elopes, and a e he e o e obsole e om an ene ge ic poin o iew.
31
32 Social housing ep esen s an impo an pe cen age o he esiden ial s ock in sou he n Eu ope, wi h
33 speci ic socioeconomic cha ac e is ics ha en ail pa icula needs and a use pa e n di e en om he
34 s anda dized one. Field esea ch on social housing in sou he n Eu ope [6, 7, 8, 9] shows ha hese
35 buildings ha e much lowe ene gy consump ion han ha es ima ed by he na ional ene gy assessmen
36 p ocedu es de i ed om Di ec i e 2002/91/EEC and i s upda es [10], based on gene al p emises o
37 in ensi y and habi s o use o buildings and ene gy, no applicable in he case o social housing. An
38 example o his is ha he es ima ed a e age hea ing consump ion o Spanish mul i- amily dwellings
39 (wi h an a e age a ea o 88.7 m2) in he Medi e anean clima e is 3673 kWh pe yea pe dwelling [11],
40 while o low income households (decla ed annual household income below 15,000 €) in sou he n Eu ope
41 i is a ound 1386 kWh pe yea [6].
42
43 The e is ex ensi e esea ch analysing he di e gence be ween eal consump ion and consump ion
44 es ima ed h ough simula ion, ei he by so wa e ecognized by he scien i ic communi y o he o icial
45 so wa e o he di e en coun ies [12,13,14,15]. This ‘pe o mance gap’ has gene ally been a ibu ed o
46 use beha iou and, o a lesse ex en , o a poo iden i ica ion o he cons uc i e cha ac e is ics o
47 buildings [16,17]. In o de o educe he e o a e due o he poo iden i ica ion o he cons uc i e
48 cha ac e is ics, i would su ice o ca y ou he ele an es s in he building, such as ai pe meabili y and
49 in a- ed he mog aphy es s o U-measu emen s [12,18]. Howe e , he e o associa ed o use pa e n
50 de ini ion is much mo e di icul o iden i y and educe.
51
52 Many o he s udies abou occupan beha iou ocus on e o i ed dwellings (low-ene gy) in cen al and
53 no he n Eu ope (clima es wi h se e e win e s), whe e eal consump ion is equen ly much highe han
3
54 es ima ed consump ion due o he Rebound e ec [19, 20]. Howe e , in many o he cases, he opposi e
55 occu s: eal consump ion is much lowe han ha es ima ed, because use s spend a less ime in he
56 dwellings han he ime es ablished by he s anda dized use pa e ns o he di e en coun ies, known as
57 he P ebound e ec [13, 20].
58
59 In he case o social housing, he di e gence be ween eal and es ima ed consump ion is e en g ea e due
60 o an addi ional a iable: when use s occupy hei dwellings, do hey do so in condi ions o he mal
61 com o ? The s anda dized use pa e ns assume ha use s li e in he mal com o condi ions, bu in social
62 housing in sou he n Eu ope, al hough i belongs o a mild win e clima e zone, i is usual o o go com o
63 and li e in uel po e y condi ions [6, 7]. In addi ion, in he speci ic case o sou he n Spain, only 5% o
64 mul i- amily dwellings buil be o e 1979 ha e a cen alized hea ing sys em, and 13% ha e a local hea ing
65 sys em [3]. These da a demons a e ha his housing s ock does no ha e he mal condi ioning means o
66 ensu e he main enance o he mal com o condi ions.
67
68 Due o he uel po e y ound in his social housing s ock, in es men s in ene gy e o i ing (usually
69 ocused on imp o ing he insula ion o i s en elope) [21, 22, 23] a e o en ine ec i e om an ene gy
70 sa ing poin o iew wi h excessi e payback pe iods. Al hough i is e y di icul o educe ene gy
71 consump ion when i is so low, his does no mean ha e o i ing is no bene icial, bu simply means ha
72 ins ead he inal aim ough o be he imp o emen o he mal com o condi ions in he dwellings, whe e
73 he p o i ma gin is e y high [24].
74
75 The main objec i e o his esea ch is o quan i y he eal condi ions o he mal com o in he speci ic
76 con ex o social housing in sou he n Eu ope (mild win e clima e), based on he adap i e model
77 es ablished by s anda d EN-15251 [25] and ene gy consump ion. To his end, a speci ic me hodology
78 based on in-use moni o ing has been de eloped and applied o h ee case s udies ep esen a i e o he
79 ypology, cons uc i e sys em and clima e o sou he n Spain. Th ough his moni o ing, eal use and
80 occupancy pa e ns a e de ined in o de o de elop ene gy simula ion models adjus ed o he eal
81 beha iou o his housing s ock, signi ican ly educing he ‘pe o mance gap’ be ween eal and es ima ed
82 consump ion. The conclusions ob ained a e expec ed o be he po en ial s a ing poin o a u u e change
4
83 in he s anda dized use and occupa ion pa e ns, and he ene gy e o i ing policies o social housing
84 s ock in he Medi e anean clima e.
85
86 2. Me hodology
87 In his wo k he me hodology used has been de eloped based on p e ious esea ch in o de o u he
88 examine he cha ac e iza ion o he cu en ene gy condi ions o social housing s ock in sou he n Eu ope
89 [26]. To do so, a de ailed ene gy and en i onmen al assessmen o he dwellings was ca ied ou h ough
90 moni o ing and subsequen ene gy simula ion.
91 2.1. Moni o ing
92 Di e en moni o ing me hodologies ha e been alida ed by he scien i ic communi y. Two
93 me hodologies a e dis inguished ocusing on he measu emen o en i onmen al pa ame e s [27]: spo
94 measu emen s aken only once o long- e m measu emen s aken a speci ic in e als, om minu es o
95 hou s. The ype o measu emen depends on he ype o da a equi ed o he in es iga ion.
96
97 In gene al, spo measu emen s a e used when he aim is he e alua ion o he mal com o h ough
98 su eys and i is necessa y o link hese wi h he in e nal and ex e nal en i onmen al condi ions o ha
99 poin in ime, o when i is no possible o ca y ou long- e m measu emen s due o economic o in usion
100 cons ain s. Long- e m measu emen s a e undamen al when he pu pose o he moni o ing is o
101 de e mine he beha iou o he building o e a gi en pe iod o ime such as a season o a ull yea . In
102 addi ion, hese ypes o measu es a e necessa y o e alua e he mal com o ollowing an adap i e model,
103 one o he main aims o his esea ch. Thus, his moni o ing me hodology includes long- e m
104 measu emen s ( empe a u e, ela i e humidi y, CO2 le el, and ene gy consump ion) which a e
105 complemen ed wi h spo es s (ai pe meabili y and in a- ed he mog aphy).
106 2.1.1. Ai pe meabili y es and In a- ed he mog aphy
107 Dep essu isa ion es s we e ca ied ou in each case s udy in o de o e i y he ai igh ness o he
108 en elope o he dwellings, acco ding o no m UNE EN-13829 [28]. The Blowe Doo equipmen used in
109 his es was ins alled in he en ance doo o he dwellings and con olled om inside he esiden ial uni .
5
110
111 This in o ma ion was complemen ed wi h he cap u e o images o dwelling en elopes using a
112 he mog aphic came a, ollowing no m UNE EN-13187 [29]. The aim o his es is o sea ch o he mal
113 beha iou pa e ns o he en elopes in he buildings unde s udy.
114 2.1.2. In si u ambien measu emen s
115 The in si u da a collec ion o en i onmen al a iables is essen ial o he e alua ion o he en i onmen al
116 beha iou o he case s udies. Fo his eason, his esea ch has moni o ed ai empe a u e, ela i e
117 humidi y and CO2 le els inside he dwellings. Two WOHLER CDL 210 indoo da a-logge s we e placed
118 in each dwelling (one in he li ing oom and he o he in he main bed oom) o measu e he a iables
119 e e y 30 minu es o a ull yea .
120
121 Da a p o ided by h ee me eo ological s a ions belonging o he Spanish S a e Me eo ological Agency
122 [30] we e used o analyse ex e nal en i onmen al a iables. The a iables o empe a u e, ela i e
123 humidi y, sola adia ion, wind speed and di ec ion, and p ecipi a ion we e measu ed e e y 30 minu es
124 o e a yea .
125
126 In addi ion o he analysis o en i onmen al a iables in win e his esea ch also s udies he le el o
127 he mal com o in he dwellings acco ding o he adap i e model es ablished by EN-15251 [25]. This
128 model o adap i e he mal com o analysis ocuses on he in e ac ion be ween people and buildings
129 ( h ough indoo empe a u e) and on hei expec a ions (based on ou doo empe a u e) [31]. In o de o
130 ob ain he ou doo e e ence empe a u e (TeR), he daily weigh ed a e age was calcula ed acco ding o
131 equa ion 1. Fo he calcula ion o he op imum ope a ing empe a u e (Top), equa ion 2, es ablished in EN-
132 15251, was used. Case s udies belong o ca ego y III, associa ed wi h exis ing buildings, which means an
133 accep abili y band o +/- 4 ºC in ela ion o he calcula ed Top.
134 (1) TeR = (1 - P- * Ted-1 + P * TeR-1
135 whe e:
136 TeR: unning mean empe a u e o oday
137 Ted-1: daily mean ex e nal empe a u e o p e ious day;
138 TeR-1: unning mean empe a u e o he p e ious day;
139 P; is a cons an be ween 0 and 1. Recommended o use 0.8.

6
140 (2) Top = 0.33 * TeR + 18.8
141
142 2.1.3. Ene gy consump ion measu emen s
143 Ano he key aspec o he e alua ion o he beha iou o he case s udies is he in si u da a collec ion o
144 ene gy a iables. As is usually he case wi h social housing in sou he n Spain, none o hese case s udies
145 ha e gas- uelled hea ing sys ems, and he e o e he esea ch ocuses on elec ici y consump ion. The
146 de ailed ene gy consump ion (sub-me e ing) was moni o ed by a gene al consump ion me e in he
147 elec ical panel and se e al indi idual me e s in he socke s o some appliances (mainly local hea ing and
148 cooling sys ems). Consump ion was measu ed in kWh e e y 15 minu es o e a yea . This helps o
149 es ablish ela ionships be ween com o le el, indoo and ou doo condi ions, and use beha iou . In
150 addi ion, in o de o comple e and con as he moni o ed consump ion, his o ical da a o gene al
151 elec ical consump ion o he case s udies we e compiled using pas elec ici y bills.
152 2.1.4. Use pa e ns
153 In o de o a oid he usual di e gence be ween eal and es ima ed consump ion (P ebound e ec ),
154 moni o ing da a was used o de ine use pa e ns. A mixed me hodology was used in his esea ch o
155 cap u e he echnical and social aspec s om use p ac ices quali a i ely and quan i a i ely [32]. In o de
156 o explain and alida e hese aspec s he quali a i e da a ob ained om he use su eys and he use
157 pa e ns ob ained om he quan i a i e da a measu ed in he dwellings ( empe a u e, CO2 concen a ion
158 and elec ic consump ion) we e c oss- e e enced.
159
160 In o de o analyse he quan i a i e da a, he hou ly a e age alues o he en i e win e pe iod we e used
161 [33]: empe a u es in deg ees cen ig ade (ºC), CO2 concen a ion in pa s pe million (ppm), hea ing local
162 sys ems ope a ion on a scale o 0 o 1 (0 means o and 1 on) and gene al elec ical consump ion in
163 kilowa -hou (kWh). This esea ch ocused on he analysis o weekdays, which is when pa e ns a e
164 usually epea ed he mos , whe eas a weekends beha iou is usually mo e i egula .
165
166
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167 2.2. Ene gy simula ion
168 Fo he simula ion o he en i onmen al and ene gy beha iou o he case s udies, he me hodology
169 equi es wo ini ial asks: cons uc ion o he ene gy model o ep oduce he ooms s udied and an ene gy
170 model adjus men p ocess.
171 2.2.1. Ene gy model cons uc ion
172 The ene gy model was de eloped wi h so wa e DesignBuilde ( .4.7.0.027), which uses Ene gyPlus
173 [34], a simula ion p og am ecognized by he US DOE [35].
174
175 Models ec ea ing he whole dwelling and i s bounda y condi ions we e gene a ed o each o he case
176 s udies moni o ed. The clima e da a used o he ene gy simula ion we e p o ided by h ee me eo ological
177 s a ions belonging o he Spanish S a e Me eo ological Agency [30], whose da a we e p e iously
178 alida ed compa ing hem wi h spo measu emen s aken ou side he case s udies. The cons uc i e
179 de ini ion o he en elope (sec ion 3.2) and he use and occupa ion pa e ns o he case s udies (sec ion
180 3.3) we e also aken in o accoun o he de elopmen o he model. In addi ion o occupa ion habi s, he
181 models also include ligh ing pa e ns, use o local hea ing sys ems, na u al en ila ion (window opening),
182 and use o sun p o ec ion (shu e s, awnings…).
183
184 Ano he aspec ha helps o educe he unce ain y o he model is he in oduc ion o he a e o
185 in il a ion measu ed in he ai pe meabili y es .
186 2.2.2. Ene gy model adjus men
187 As Cip iano e al. [36] co ec ly poin ou , he li e a u e e iew shows he absence o a gene ally accep ed
188 me hodology o he calib a ion o ene gy building models. Howe e , some au ho s de ine calib a ion
189 me hodologies based on he manual adjus men o he models [37, 18], while o he s base hem on a mul i-
190 s age guided p ocedu e [36, 38].
191 This is a complex ask, in ol ing many pa ame e s wi h a signi ican deg ee o unce ain y. Many o he
192 s udies on calib a ion ocus on he impo ance o in si u measu emen s as a ool o he adjus men o
193 ene gy simula ions [36, 38]. The e o e, as desc ibed in he p e ious sec ion, all he in o ma ion collec ed
194 in si u in his esea ch was inco po a ed in o he ene gy models. Howe e , he e a e s anda d c i e ia o
8
195 de e mine when a model can be conside ed o be calib a ed, ocusing on how he model adjus s o
196 measu ed da a and analysing he deg ee o e o [39, 40, 41].
197
198 Usually, he li e a u e abou he calib a ion o ene gy model ocuses on he adjus men o he hea ing
199 ene gy consump ion [36]. Howe e , his would make no sense in hese case s udies, since he hea ing
200 ene gy consump ion is e y insigni ican in he social housing p o ile in sou he n Spain ( he dwellings a e
201 usually in condi ions o ee e olu ion). The e o e, his esea ch ocuses on he manual adjus men o
202 en i onmen al a iables du ing he win e pe iod, speci ically in he in e io empe a u e (as his is he
203 a iable in ol ed in he mal com o analysis). The esul s o ene gy simula ions and moni o ing we e
204 compa ed bo h g aphically ( o a ep esen a i e week) and s a is ically ( o he en i e win e pe iod). The
205 g aphs p o ide in o ma ion abou he ime pe iods in which he wo da ase s di e ge, while he s a is ical
206 indices p o ide a nume ical index o assess how closely he simula ion ma ches he measu ed da a.
207
208 ASHRAE Guideline 14-2002 [39] was ollowed in he s a is ical alida ion o he model, es ablishing wo
209 e o indica o s, he Mean Bias E o (MBE) and he Coe icien o Va ia ion o he Roo Mean Squa e
210 E o (CVRMSE) alues, acco ding o equa ions (3) and (4):
211 (3) MBE =
Ni
i=1(Mi Si)
Ni
i=1Mi
212 whe e:
213 Mi: measu ed da a a ins ance n;
214 Si: simula ed da a a ins ance n;
215 Ni: coun o he numbe o da es used in he calib a ion.
216 (4) CVRMSE =
Ni
i=1
(  )2
Ni
1
Ni Ni
i=1Mi
217 whe e:
218 Mi: measu ed da a a ins ance n;
219 Si: simula ed da a a ins ance n;
220 Ni: coun o he numbe o da es used in he calib a ion
221
222 ASHRAE Guideline 14 conside s a building model calib a ed when hou ly MBE alues all wi hin ±10%
223 and hou ly CVRMSE alues all below 30%. The MBE p o ide an indica ion o e o s a e aged o he
9
224 mean o measu ed alues bu may be in luenced by o se ing e o s, while he CVRMSE index is a
225 measu e o accumula ed e o no malized o he mean o he measu ed alues.
226
227 3. Case s udies: social housing
228 Whene e a de ailed analysis is ca ied ou , in ol ing long campaigns o moni o ing and e alua ion o he
229 he mal en elope o buildings, i is complica ed o ha e a la ge sample o case s udies, due o inancial
230 and ime cons ain s [27]. Fo his eason, based on a p e ious analysis o he social housing s ock o
231 sou he n Spain [42], he s a is ically mo e ep esen a i e mo phological and cons uc i e building
232 ypologies we e de e mined and some neighbou hoods we e selec ed by he Andalusian Go e nmen as
233 cases o in e es o i s ene gy e o i ing plan [43]. Th ee dwellings belonging o hese cases o in e es
234 we e selec ed as case s udies in his esea ch. The main cha ac e is ics o he clima e in which hey a e
235 loca ed, mo phological ypology, cons uc i e cha ac e is ics o i s en elope and he use pa e ns will be
236 desc ibed below.
237 3.1. Loca ion and clima e
238 The h ee case s udies a e loca ed in places wi h a Medi e anean clima e ( igu e 1a), speci ically h ee
239 Spanish ci ies wi h he lowes alues in he scale o win e clima e se e i y: Se ille (win e clima e zone
240 B), Huel a and Malaga (win e clima e zone A) ( igu e 1b). Table 1 summa izes he main clima e
241 cha ac e is ics o hese loca ions.
242
(a)
(b)
Figu e 1. Medi e anean clima e map: (a) in Eu ope, (b) in sou he n Spain [44].
243
16
342 hou ly empe a u e, ela i e humidi y and CO2 concen a ion e olu ion du ing he coldes mon h o he
343 win e pe iod. In he empe a u e g aphs an adap i e com o band has been included ollowing s anda d
344 EN-15251. The CO2 g aphs also included a e e ence limi below which indoo ai quali y is conside ed
345 good (1200 ppm), ollowing he FSIAQ (Finnish Classi ica ion o indoo clima e 2000 [47]) s anda d o
346 ca ego y S3 (a less demanding ca ego y which may be associa ed wi h exis ing buildings).
347
348 In case 1 (Se ille), du ing he win e pe iod moni o ed (Decembe 2014 - Feb ua y 2015) he coldes
349 mon h was Janua y. Du ing his pe iod ( igu e 5), wi h mild ou doo empe a u es anging om 5 ºC o
350 18 °C, inside he dwelling he empe a u es we e always a ound 14-15 °C, and so always below he lowe
351 limi se by adap i e he mal com o s anda d EN-15251 (a ound 18 °C). In pa icula , he a e age
352 Janua y in e io empe a u e was 15 °C in he li ing oom and 14.2 °C in he main bed oom. The
353 beha iou o he wo moni o ed ooms was e y simila , wi h he excep ion o some imes o nigh when
354 a local hea ing sys em was used in he bed oom. As i is a e y shaded dwelling, he e is no much sola
355 gain du ing he day epea edly making indoo empe a u es all below ou doo ones.
356
357 Analysing o he en i onmen al a iables ( igu e 6), an in e nal ela i e humidi y be ween 60 % and 80 %
358 was ound, compa ed o an ex e nal one a ying om 40 % o 90 %. The in e io CO2 concen a ion
359 shows wo e y di e en ways o use o he ooms moni o ed. While he li ing oom is ou inely kep
360 below 1250 ppm (wi h he excep ion o high occupancy pe iods) due o spo adic use, he bed oom
361 eaches 5000 ppm o a high pe cen age o nigh s because o mo e con inued use.
362
363 In case 2 (Malaga), du ing he win e pe iod moni o ed (Decembe 2015 - Feb ua y 2016) he coldes
364 mon h was Feb ua y. In his mon h ( igu e 7), wi h wa m ou doo empe a u es anging om 10 ºC o 20
365 ºC, he empe a u es inside he dwelling we e always a ound 18-19 ºC, and almos always below he
366 lowe limi se by he adap i e he mal com o s anda d EN-15251 (a ound 20 °C in his case). The
367 a e age in e io empe a u e o Feb ua y was 18.1 ºC in he main li ing oom and 18.8 ºC in he main
368 bed oom. The beha iou o he wo moni o ed ooms was e y simila , wi h he excep ion o some
369 pe iods whe e a local hea ing sys em was used in he main li ing oom. This dwelling main ains a e y
370 s able empe a u e h oughou he whole day.
371

17
372
373
374 Figu e 5. Case 1 - Se ille: hou ly empe a u e e olu ion du ing Janua y.
375
376 Figu e 6. Case 1 - Se ille: hou ly ela i e humidi y and CO2 concen a ion e olu ion du ing Janua y.
377
378 Figu e 7. Case 2 - Malaga: hou ly empe a u e e olu ion du ing Feb ua y.
18
379
380 Figu e 8. Case 2 - Malaga: hou ly ela i e humidi y and CO2 concen a ion e olu ion du ing Feb ua y.
381
382 Figu e 9. Case 3 - Huel a: hou ly empe a u e e olu ion du ing Janua y.
383
384 Figu e 10. Case 3 - Huel a: hou ly ela i e humidi y and CO2 concen a ion e olu ion du ing Janua y.
385
19
386 An in e nal ela i e humidi y be ween 50 % and 80 % was ound ( igu e 8), compa ed o an ex e nal one
387 anging om 30 % o 95 %. The in e io CO2 concen a ion shows a e y simila way o use o he wo
388 ooms moni o ed, p obably because he doo s o all he ooms a e always open linking hem. Bo h a e
389 ou inely kep below 1250 ppm due o low occupancy o hese ooms. Ano he key aspec o he good
390 quali y o he in e io ai in his case s udy is he con inuous ope a ion o he na u al en ila ion sys em.
391 This sys em keeps a low con inuous en ila ion a e h ough he ki chen window and ex ac ed by he
392 en s in he ba h ooms.
393
394 In case s udy 3 (Huel a), du ing he moni o ed win e pe iod (Decembe 2016 - Feb ua y 2017) he
395 coldes mon h was Janua y. Du ing his mon h ( igu e 9) he ex e nal empe a u es we e wa m, be ween
396 10 ºC and 20 °C, while inside he dwelling he empe a u es we e measu ed a a ound 13-14 °C, a below
397 he lowe limi se by adap i e he mal com o s anda d EN-15251 (a ound 20 °C in his case). In
398 pa icula , he Janua y a e age in e io empe a u e was 14.7 °C in he li ing oom and 13 °C in he main
399 bed oom. The wo moni o ed ooms exhibi almos pa allel beha iou , wi h he excep ion o nigh - ime,
400 when he empe a u e dec ease in he bed oom is g ea e .
401
402 Analysing o he en i onmen al a iables ( igu e 10), an in e nal ela i e humidi y be ween 50 % and 85
403 % was ound, compa ed o an ex e nal one a ying om 30 % o 70 %. The in e io CO2 concen a ion
404 shows wo sligh ly di e en ways o using he moni o ed ooms. Du ing he day he doo s o all ooms
405 a e kep open which homogenizes he quali y o he ai . Howe e , a nigh he bed oom eaches highe
406 CO2 concen a ions, up o 2000 ppm, while he li ing oom s ays below 1250 ppm. In gene al, he in e io
407 ai main ains good quali y due o he ac ha he use s en ila e he dwelling na u ally e e y mo ning
408 ( om 8.00 o 11.00 h, as seen om he su ey).
409 4.2. Com o analysis
410 The he mal com o le el in he h ee case s udies du ing he win e pe iod has been analysed acco ding
411 o he adap i e model es ablished by s anda d EN-15251 [26]. In addi ion, he pe cen age o hou s o
412 discom o and he a e age de ia ion o he in e io empe a u es wi h espec o he com o band ha e
413 been con as ed wi h he pe cen age o hou s o use o he local hea ing sys ems in each dwelling.
414
20
Pe iod
Decembe
2014
Janua y
2015
Feb ua y
2015
Win e
2014/15
% hou s o discom o
Li ing oom
99.7
100
100
99.9
Bed oom 1
100
100
99.5
99.9
A e age de ia ion Indoo empe a u e – Com o band (ºC)
Li ing oom
-3.4
-3.7
-2.7
-3.3
Bed oom 1
-3.9
-4.2
-3.9
-3.8
% hou s o use o local hea ing sys ems
Po able
ai hea e
5.4
4.4
3.3
4.4
Bed oom 2
hea pump
9.6
14.7
4.6
9.9
415 (a)
Pe iod
Decembe
2015
Janua y
2016
Feb ua y
2016
Win e
2015/16
% hou s o discom o
Li ing oom 1
92.5
87.5
99.4
92.9
Bed oom 1
*
100
95.4
96.1
A e age de ia ion Indoo empe a u e – Com o band (ºC)
Li ing oom 1
-1.3
-1.6
-2.0
-1.6
Bed oom 1
*
-1.3
-1.3
-1.3
% hou s o use o local hea ing sys ems
Li ing oom 1
hea pump
12.9
15.2
18.2
15.3
Li ing oom 2
hea pump
13.6
17.7
20.8
17.3
* Loss o moni o ing da a due o equipmen ailu e.
416 (b)
Pe iod
Decembe
2016
Janua y
2017
Feb ua y
2017
Win e
2016/17
% hou s o discom o
Li ing oom
100
100
100
100
Bed oom 1
98.7
100
100
99.5
A e age de ia ion Indoo empe a u e – Com o band (ºC)
Li ing oom
-3.6
-4.6
-3.0
-3.8
Bed oom 1
-4.8
-5.8
-4.2
-5.0
% hou s o use o local hea ing sys ems
Li ing oom
hea pump
7.1
22
2.8
10.9
Bed oom 1
hea pump
0.1
0.3
0.1
0.2
417 (c)
418 Figu e 11. E alua ion o he mal com o and use o hea ing sys ems du ing he win e pe iod: (a) case 1 -
419 Se ille, (b) case 2 - Malaga, (c) case 3 - Huel a.
420
421 In cases 1 and 3 (Se ille and Huel a), a high pe cen age o hou s o discom o was de ec ed h oughou
422 he win e pe iod in he wo ooms moni o ed, a ound 100 % ( igu e 11a, 11c). In case 3, despi e ha ing
423 highe ex e nal empe a u es han in case 1, in e io empe a u es e en u he emo ed om he com o
424 band a e obse ed. This is mainly due o hea losses o case 3 h ough he oo , as i is on he op loo . In
425 bo h cases, in spi e o being in a clea si ua ion o discom o , he pe cen age o hou s o use o local
426 hea ing sys ems is e y low. Du ing he coldes pe iod (Janua y) his pe cen age is less han 15 % in
21
427 Se ille and 22 % in Huel a. In case 3 he use o he local hea ing sys em in he main bed oom is almos
428 ze o al hough his is he oom u hes away om he com o band.
429
430 In case 2 (Malaga), as he clima e is milde han in case 1 (bu simila o case 3), he pe cen age o hou s
431 o discom o is sligh ly lowe han in he o he cases bu i is s ill high. This pe cen age was abo e 90 %
432 du ing he whole win e pe iod in he wo ooms moni o ed ( igu e 11b). Al hough he pe cen age o
433 hou s o discom o does no di e much om he o he cases, he g aph shows ha he a e age de ia ion
434 o he in e io empe a u e wi h espec o he com o band is much lowe in case 2 (-1.6 ºC in he li ing
435 oom and -1.3 °C in he bed oom) han in cases 1 (-3.3 °C in he li ing oom and -3.8 °C in he bed oom)
436 and 3 (-3.8 °C in he li ing oom and -5.0 °C in he bed oom). Howe e , in his case he pe cen age o
437 hou s o use o local hea ing sys ems is highe han in case 1 and simila o he case 3 li ing oom du ing
438 he colde pe iods, eaching 20 % in Feb ua y. In spi e o his, he pe cen age o hou s o use o he
439 hea ing sys ems does no nea ly co e he pe cen age o hou s o discom o .
440 4.3. Ene gy consump ions
441 The elec ici y consump ion o he h ee case s udies has been analysed comp ehensi ely and in de ail
442 du ing he win e pe iod, ocusing on he consump ion o he local hea ing sys ems. In o de o e alua e
443 he hea ing consump ion, he addi ion o he consump ion o all local hea ing sys ems (kWh) has been
444 di ided by he hea ed a ea, which in his case is he o al a ea o he dwelling excep o he ki chen and
445 ba h ooms ( he doo s o he ooms a e always kep open). In he h ee case s udies, e y low le els o
446 o al consump ion and no signi ican pe cen ages o he use o local hea ing sys ems we e de ec ed.
447
448 In cases 1 and 2, i is wo h no ing ha he Ho Wa e p oduc ion sys em is elec ic. In case 1 (Se ille)
449 speci ically he wa e hea e shows e y signi ican consump ion ( igu e 12a), a ound 24 %, well abo e
450 hea ing consump ion, a ound 13 %. Also in his case, he high consump ion o wo compu e s, a ound 19
451 %, is signi ican since he use s usually wo k a home. In case 2 (Malaga) ( igu e 12b), a balanced
452 dis ibu ion o consump ion can be obse ed, in which hea ing accoun s o a ound 20 % o o al
453 consump ion. In case 3 (Huel a) ( igu e 12c), he li ing oom hea ing sys em consump ion is no able as i
454 accoun s o 29 % o he o al consump ion o he dwelling. In his case, he global consump ion o all
455 de ices wi hou indi idual me e s (‘o he s’ in igu e 12) ep esen s a mo e signi ican pe cen age han in

22
456 he o he cases (52 %), due o he ac ha i has less elec ic equipmen (Ho Wa e is hea ed by gas) and
457 he consump ion om ligh ing and cooking acqui es g ea e ele ance.
458
459 Looking a he o al consump ion da a, i is appa en ha case 1 (occupied by a young couple who wo k a
460 home) consumes he same as case 2 (occupied by a amily o 4 membe s) and almos double ha o case
461 3 (occupied by a e i ed couple). The economic le el o he use s o case 1 is sligh ly highe han he
462 o he s. When analysing he hea ing consump ion, case 2 consumes he highes amoun in ela ion o he
463 space hea ed, as well as aking up he highes pe cen age o use o he hea ing sys ems ( igu e 11).
(a)
Pe iod
To al consump ion
(kWh)
Hea ing consump ion
(kWh/m2 hea ed)
Decembe 2014
355.89
1.12
Janua y 2015
394.80
1.15
Feb ua y 2015
305.84
0.47
Win e 2014/15
1056.53
2.75
(b)
Pe iod
To al consump ion
(kWh)
Hea ing consump ion
(kWh/m2 hea ed)
Decembe 2015
268.01
1.46
Janua y 2016
327.23
1.57
Feb ua y 2016
410.44
1.42
Win e 2015/16
1005.68
4.45
(c)
Pe iod
To al consump ion
(kWh)
Hea ing consump ion
(kWh/m2 hea ed)
Decembe 2016
165.87
0.77
Janua y 2017
206.46
1.76
Feb ua y 2017
133.68
0.38
Win e 2016/17
506.01
2.91
464 Figu e 12. E alua ion o elec ic consump ion du ing he win e pe iod: (a) case 1 - Se ille, (b) case 2 -
465 Malaga, (c) case 3 - Huel a.
23
466 Table 5. S a is ical alida ion o he ene gy models.
MBE Li ing oom
MBE Bed oom
CV Li ing oom
CV Bed oom
Case 1 (Se ille)
-5.33 %
-5.06 %
10.14 %
11.27 %
Case 2 (Malaga)
-0.23 %
-3.17 %
4.08 %
4.33 %
Case 3 (Huel a)
-4.78 %
-1.73 %
8.22 %
5.61 %
ASHRAE S anda ds
MBE < 10 %
CV(RMSE) < 30 %
467
468
469 (a)
470
471 (b)
472
473 (c)
474 Figu e 13. G aphic alida ion o he ene gy models: (a) case 1 - Se ille, (b) case 2 - Malaga,
475 (c) case 3 - Huel a.
24
476 4.4. Ene gy model adjus men
477 Following da a collec ion o all case s udies, he ene gy models we e cons uc ed and subsequen ly
478 simula ed o e i y he adjus men o he measu ed da a. Fi s , he esul s o ene gy simula ions and
479 moni o ing o a ypical week we e compa ed in g aphs. Acco ding o he esul s ob ained, he ene gy
480 model achie es he adjus men o a iables on which he e is some deg ee o unce ain y (due o he
481 impossibili y o measu emen ), such as he na u al en ila ion a e h ough opening windows and he
482 occupan s’ me abolic a e. The inal esul is an adequa e g aphic adjus men o he ene gy models ( igu e
483 13), which ook in o accoun he deg ee o e o o he measu emen equipmen (+/- 0.5 ºC), ep esen ed
484 in he g aph by e o ba s.
485
486 In addi ion, he s a is ical alida ion o he ene gy models has been e i ied du ing he whole win e
487 pe iod, ollowing he indica o s es ablished by he ASHRAE [35] ( able 5). The adjus men be ween he
488 ene gy models and he measu ed da a shows ha he moni o ing o he buildings is essen ial o ob aining
489 a alid adjus men , and so g ea ly educing he numbe o unce ain a iables. The e o e, o he ene gy
490 e alua ion o e o i ing measu es i is essen ial o ha e a calib a ed simula ion model, e en mo e so in
491 case s udies wi h a use pa e n so a emo ed om he s anda ds.
492
493 5. Conclusions
494 In sou he n Eu ope, he e is ex ensi e social housing s ock wi h a no able need o e o i ing due o
495 ene gy obsolescence. Ene gy simula ion inco po a ing s anda dized use pa e ns canno be used o
496 asce ain he mos app op ia e measu es o hese pa icula dwellings o a oid he P ebound e ec a e
497 e o i ing. Gi en ha he case s udies e alua ed demons a e a a ie y o use p o iles, e o i ing
498 decisions should no be simpli ied by using a single use p o ile. Na ional egula ions should de ine
499 di e en use p o iles, including he numbe and age o use s, he in ensi y o use o he dwellings, and
500 he clima ic zone in which i is loca ed ( o conside he di e en c i e ia o he mal com o ).
501
502 A e moni o ing he en i onmen al and ene gy beha iou o some case s udies (du ing he win e
503 pe iod), he ollowing esul s ha e been ob ained:
25
504 Despi e he mild clima e condi ions du ing he ha shes win e mon hs, he a e age indoo
505 empe a u es measu ed a e low, oscilla ing be ween 13 ºC (Huel a) and 18.8 ºC (Malaga).
506 The low alues o he in e io empe a u e mean ha o mos o he ime he dwellings a e in
507 discom o condi ions, and he pe cen age o hou s ou side he com o band anges om 92.9 %
508 (Malaga) o 100 % (Huel a).
509 In spi e o hese inadequa e indoo he mal condi ions, use s gene ally ejec he use o hei
510 local hea ing sys ems, mainly o inancial easons. The pe cen age o hou s o use o he local
511 hea ing sys ems anges om 9.9 % (Se ille) o 17.3 % (Malaga).
512 Despi e he wa m Medi e anean win e s, he low ene gy pe o mance o he p e-1980 social housing
513 en elope (wi hou any kind o he mal insula ion) causes indoo he mal condi ions a emo ed om
514 com o . This, added o he lack o global and e icien hea ing sys ems and o inancial cons ain s o
515 use s, means ha his housing s ock is comple ely exposed o he isk o alling in o a si ua ion o uel
516 po e y. The cu en ene gy policies mus ake in o accoun he en i onmen al beha iou o social
517 housing in sou he n Spain desc ibed in his esea ch, and ensu e ha ene gy e o i ing g an s ocus on
518 passi e measu es ha en ail he imp o emen o he mal com o ins ead o ene gy sa ings.
519
520 This esea ch also demons a es ha he moni o ing o in-use dwellings pe mi s enough in o ma ion o be
521 ob ained o gene a e ene gy simula ion models ha minimize he ‘pe o mance gap’ be ween eal and
522 es ima ed beha iou . This is essen ial i e o i ing decisions a e o be based on he esul s o ene gy
523 simula ions.
524
525 Acknowledgemen s
526 This esea ch was pa ially unded by he V In e nal Resea ch Plan o he Uni e sidad de Se illa and he
527 TEP-130 esea ch g oup.
528
529 Pa o his esea ch was ca ied ou wi hin he esea ch p ojec s: ‘In e ención en ba iadas esidenciales
530 obsole as: Manual de buenas p ác icas’ ( e . 2013-0000006939), unded by he Andalusian Regional
531 Go e nmen ; and ‘REFAVIV: Rehabili ación ene gé ica de las achadas de i iendas sociales
532 de e io adas aplicando p oduc os inno ado es nacionales (DIT) y eu opeos (DITE)’ ( e . BIA2012-