Sustainable and smart energy systems for Europe’s cities and rural areas:
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Format: | Buch |
Sprache: | English |
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Hanser
[2022]
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Beschreibung: | XXVI, 358 Seiten Illustrationen, Diagramme, Karten 25 cm |
ISBN: | 9783446472945 |
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245 | 1 | 0 | |a Sustainable and smart energy systems for Europe’s cities and rural areas |c Alexander Schlüter, Juan Bernabé-Moreno |
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264 | 4 | |c © 2022 | |
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Datensatz im Suchindex
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adam_text |
FOREWORD
BY
FABRIZIO
ROSSI
.
V
FOREWORD
BY
THE
EDITORS
.
VII
FOREWORD
TO
THE
EUROPEAN
EDITION
.
VIII
EDITORS
AND
AUTHORS
.
XVII
EDITORS
AND
AUTHORS
.
XVII
AUTHORS
.
XVIII
I
FUNDAMENTALS
AND
STRATEGIC
PLANNING
1
FIRST
STEPS
TOWARDS
SMART
MUNICIPALITIES
.
3
ALEXANDER
SCHLUTER
2
VISION
OF
A
SUSTAINABLE
DIGITAL
FUTURE
.
7
MATTHEW
TIMMS,
LAURA
FARBER
2.1
CLIMATE
CHANGE
AND
ITS
CONSEQUENCES
.
7
2.2
DIGITALISATION
AND
MUNICIPALITIES
.
10
2.3
LITERATURE
.
12
3
HOW
TO
MAKE
YOUR
MUNICIPALITY
SMART
AND
SUSTAINABLE
.
15
ALEXANDER
SCHLUTER
4
STRATEGIC
PLANNING
OF
THE
TRANSFORMATION
PROCESS
.
19
DIANA
KHRIPKO,
NICKY
ATHANASSOPOULOU,
IMOH
ILEVBARE,
ROB
PHAAL
4.1
BACKGROUND
ON
STRATEGIC
ROADMAPPING
.
20
4.2
SCOPING,
DESIGN
AND
PLANNING
.
22
4.3
STRATEGIC
ROADMAPPING
.
24
4.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
31
4.5
LITERATURE
.
31
II
INTEGRATING
RENEWABLE
ENERGY
SYSTEMS
1
RENEWABLE
ENERGY
-
UNLEASHING
THE
FULL
POTENTIAL
.
37
JENS
WEIBEZAHN,
ALEXANDRA
KRUMM,
PAO-YU
OEI,
LAURA
FARBER
1.1
INTRODUCTION
.
37
1.2
TECHNO-ECONOMIC
ASPECTS
.
39
1.2.1
ELECTRICITY
SECTOR
.
40
1.2.2
HEATING
SECTOR
.
44
1.2.3
MOBILITY
SECTOR
.
45
1.3
SOCIO-ECONOMIC,
REGULATORY,
AND
POLITICAL
ASPECTS
.
46
1.4
APPLICATIONS
OF
RENEWABLE
ENERGIES
.
48
1.4.1
MAJOR
CITIES:
PHOTOVOLTAIC
POTENTIAL
IN
BERLIN
AND
URBAN
HEAT
TRANSITION
IN
HAMBURG
.
50
1.4.2
TOWNS
AND
DISTRICTS:
THE
EC
'
S
PLATFORM
FOR
COAL
REGIONS
IN
TRANSITION
AND
STEINFURT
'
S
MASTERPLAN
.
52
1.4.3
RURAL AREAS
AND
VILLAGES:
DEVELOPING
AND
EXPORTING
100
%
GREEN
ELECTRICITY
IN
SCHONAU
AND
SAMSO
.
54
1.5
TENANT
ELECTRICITY:
A
GERMAN
RENEWABLE
ENERGY
PRODUCT
.
55
1.5.1
THE
PRINCIPLE
UNDERLYING
TENANT
ELECTRICITY
.
56
1.5.2
ROLES
IN
THE
TENANT
ELECTRICITY
MODEL
.
57
1.5.3
TECHNOLOGIES,
LEGAL
REQUIREMENTS,
AND
INCENTIVES
.
58
1.5.4
METERING
AND
TECHNICAL
REQUIREMENTS
.
59
1.5.5
WHY
TENANT
ELECTRICITY
IS
ATTRACTIVE
.
59
1.6
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
60
1.7
LITERATURE
.
62
2
ELECTRICITY
GRIDS:
MOVING
TOWARDS
THE
SMART
GRID
.
65
VINCENZ
REGENER,
SIMON
KBPPL
2.1
BASIC
PRINCIPLES
OF
ELECTRICITY
GRIDS
.
65
2.1.1
PHYSICAL
ASPECTS
-
HOW
DOES
POWER
GET
FROM
A
TO
B?
.
65
2.1.2
WHAT
DOES
EUROPE
'
S
GRID
INFRASTRUCTURE
LOOK
LIKE?
.
66
2.1.3
WHAT
ARE
THE
BEGINNINGS
OF
ELECTRIC
POWER
TRANSMISSION?
.
67
2.1.4
WHAT
ARE
THE
FUNCTIONS
OF
GRID
OPERATORS?
.
68
2.1.5
WHAT
ARE
THE
CHALLENGES
THE
ENERGY
TRANSITION
POSES
TO
THE
GRID?
.
69
2.2
HOW
CAN
THE
ELECTRICITY
GRID
BE
TURNED
INTO
A
FUTURE-CAPABLE
SMART
GRID?
.
70
2.2.1
NEW,
DIGITAL
GRID
OPERATING
RESOURCES
AND
NETWORKING
.
71
2.2.2
TRANSPARENCY
FOR
HOUSEHOLDS:
WHAT
DO
SMART
METERS
DO?
.
72
2.2.3
FLEXIBILISATION
OF
GENERATION
AND
CONSUMPTION:
TO
SUPPORT,
OR
AT
LEAST
BE
COMPATIBLE
WITH
THE
GRID!
.
73
2.3
MICROGRIDS:
INNOVATIVE
DISTRICTS
AS
AN
INDIVIDUAL
SOLUTION
.
74
2.4
BEST
PRACTICE
FOR
THE
USE
OF
SMART
GRIDS
.
75
2.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
76
2.6
LITERATURE
.
77
3
THERMAL
GRIDS
.
79
HAGEN
BRAAS,
MARKUS
BILCHERL,
JANYBEK
OROZALIEV,
PEDER
BERNE
3.1
STATUS
OF
THE
HEATING
TRANSITION
IN
THE
EU
.
80
3.2
HEATING
GRIDS
NOW
AND
IN
THE
FUTURE
.
83
3.3
MODERN
DISTRICT
HEATING
.
84
3.4
CASE
STUDIES
.
87
3.4.1
100%
RENEWABLE
DISTRICT
HEATING
IN
MARSTAL
.
87
3.4.2
COMBINATION
OF
DIFFERENT
INFRASTRUCTURES
IN
LONDON
.
88
3.4.3
MALMO
'
S
DISTRICT
HEATING
SYSTEM
.
89
3.4.4
ECTOGRIDYY
IN
MEDICON
VILLAGE,
LUND
.
92
3.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
94
3.6
LITERATURE
.
96
III
USING
ENERGY
MORE
EFFICIENTLY
1
PREPARING
THE
GROUND
WITH
ENERGY
EFFICIENCY
.
101
RON-HENDRIK
HECHELMANN,
FLORIAN
SCHLOSSER,
HENNING
MESCHEDE,
ALEXANDER
SCHLUTER
1.1
ENERGY
EFFICIENCY
BASED
ON
THE
ONION
LAYER
MODEL
.
103
1.2
ENERGY
EFFICIENCY
IN
CROSS-CUTTING
TECHNOLOGIES
.
105
1.2.1
LIGHTING
.
106
1.2.2
VENTILATION
SYSTEMS
.
107
1.2.3
HEAT
PROVISION
AND
WASTE
HEAT
UTILISATION
.
109
1.2.4
COOLING
.
113
1.2.5
COMPRESSED
AIR
.
114
1.2.6
ELECTROMECHANICAL
DRIVES
.
115
1.3
LITERATURE
.
116
2
SAVING
ENERGY
IN
INDUSTRY
AND
COMMERCE
.
119
FLORIAN
SCHLOSSER,
RON-HENDRIK
HECHELMANN,
HENNING
MESCHEDE,
ALEXANDER
SCHLUTER
2.1
WHAT
CAN
INDUSTRY
AND
COMMERCE
DO
IN
CONCRETE
TERMS?
.
119
2.2
WHERE
DOES
ENERGY
EFFICIENCY
IN
THE
INDUSTRY
REACH
ITS
LIMITS?
.
124
2.3
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
125
2.4
LITERATURE
.
127
3
OPERATING
BUILDINGS
MORE
ENERGY
EFFICIENTLY
.
129
GARANCE
EMMERICH-BUNDEL,
MANUEL
LINDAUER,
RITA
STREBLOW,
ALEXANDER
SCHLUTER
3.1
BACKGROUND
.
129
3.2
MAIN
ENERGY
CONSUMPTION FACTORS
.
132
3.2.1
BUILDING
SHELL
.
133
3.2.2
HEATING,
VENTILATION,
AIR-CONDITIONING SYSTEMS
FOR
USER
COMFORT
135
3.2.3
LIGHTING
.
138
3.3
THE
ROLE
OF
DIGITAL
TECHNOLOGIES
.
139
3.4
REGULATIONS
FOR
ENERGY
EFFICIENCY
OF
BUILDINGS
.
142
3.5
CONCLUSION
AND
COURSES
OF
ACTION FOR
SMART
MUNICIPALITIES
.
145
3.6
LITERATURE
.
146
IV
LINKING
SECTORS
AND
STORING
ENERGY
1
SECTOR
COUPLING
AND
STORAGE
ARE
CRUCIAL
FOR
GREEN
ENERGY
.
151
HENNING
MESCHEDE,
DIANA
KHRIPKO,
ALEXANDER
SCHLUTER
2
STORAGE
SYSTEMS
FOR
INCREASED
FLEXIBILITY
.
157
MATTHIAS
PHILIPP,
ALEXANDER
JAGER,
ANDREAS
KIEFILING,
EGON
WESTPHAL
2.1
DEMAND
FOR
STORAGE
IN
THE
ELECTRICAL
ENERGY
SYSTEM
.
157
2.2
TECHNOLOGIES
.
162
2.3
AREAS
OF
APPLICATION
.
163
2.3.1
BATTERY
SYSTEMS
.
163
2.3.2
THERMAL
STORAGE
SYSTEMS
.
165
2.4
PRACTICAL
EXAMPLE:
"
WERKSVIERTEL
MITTE
"
IN
MUNICH
.
166
2.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
169
2.6
LITERATURE
.
171
3
USING
MORE
HYDROGEN
AND
GREEN
FUELS
.
173
EUGENIO
SCIONTI,
MATTEO
GENOVESE,
CHRISTOPH
PELLINGER,
PETRONILLA
FRAGIACOMO,
ALEXANDER
SCHLUTER
3.1
UNDERLYING
DRIVERS
.
173
KATHERINA
REICHE
3.2
INTRODUCTION
.
174
3.3
CURRENT
STATUS
AND
OUTLOOK
.
175
3.4
PRODUCTION
.
180
3.5
TRANSMISSION,
DISTRIBUTION
AND
STORAGE
INFRASTRUCTURES
.
183
3.6
APPLICATION
IN
ENERGY-INTENSIVE
INDUSTRIES
.
185
3.7
APPLICATION
IN
THE
POWER
SECTOR
.
187
3.8
APPLICATION
IN
BUILDINGS
.
189
3.9
APPLICATION
IN
AGRICULTURE
.
191
3.10
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
192
3.11
LITERATURE
.
194
4
PREPARING
FOR
MORE
SUSTAINABLE
MOBILITY
.
197
ALEXANDER
SCHLIITER,
MATTEO
GENOVESE,
PETRONILLA
FRAGIACOMO
4.1
CHALLENGES
FOR
THE
SECTOR
.
197
4.2
TECHNOLOGIES
AND
OUTLOOK
FOR
ELECTRIC
VEHICLES
.
202
4.3
CHARGING
AND
FLEXIBILITY OPTIONS
BY CONNECTING
TO
THE
ENERGY
SYSTEM
209
4.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
211
4.5
LITERATURE
.
214
5
MAKING
ENERGY
DEMAND
MORE
FLEXIBLE
.
217
DIANA
KHRIPKO,
HENNING
MESCHEDE,
EVA
MESCHEDE
5.1
IDENTIFYING
LOAD
SHIFTING
POTENTIALS
.
219
5.2
PRACTICAL
EXAMPLES
OF
A
FLEXIBILISATION
IN
THE
INDUSTRIAL
AND
TERTIARY
SECTORS
.
222
5.2.1
CONVERTING
ELECTRICAL
ENERGY
INTO
OTHER
ENERGY
FORMS
.
222
5.2.2
ADJUSTING
DEMAND
BY
SWITCHING
THE
ENERGY
SOURCE
.
224
5.2.3
FLEXIBILITY
IN
OPERATIONAL
PLANNING
AND
CONTROL
OF
ELECTRICAL
FACILITIES
.
226
5.2.4
FOCUS:
COMMERCIAL
WATER
SUPPLY
.
227
5.3
PRACTICAL
EXAMPLES
OF
FLEXIBILISATION
IN
HOUSEHOLDS
.
228
5.4
CONCLUSION
AND
OPTIONS
FOR
ACTION
FOR
SMART
MUNICIPALITIES
.
232
5.5
LITERATURE
.
235
V
DIGITALISING
MUNICIPALITIES
AND
ENERGY
SYSTEMS
1
DIGITALISATION:
THE
ISSUE
OF
OUR
TIME
.
241
VICTORIA
OSSADNIK
2
LOCAL
ENERGY
TRANSITION:
DIGITALISING
MUNICIPALITIES
.
243
MATTHEW
TIMMS,
LAURA
FARBER
2.1
DIGITALISATION
AS
KEY
ELEMENT
OF
THE
ENERGY
TRANSITION
.
243
2.1.1
DIGITALISATION
OF
ENERGY
SYSTEMS
.
244
2.1.2
DIGITALISATION
OF
ENERGY
CONSUMERS
.
245
2.1.3
TIPPING
POINTS
FOR
SIGNIFICANT
CHANGES
IN
ENERGY
SYSTEMS
.
247
2.2
TECHNOLOGIES
ACCELERATING
THE
TRANSITION
.
248
2.3
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
251
2.4
LITERATURE
.
252
3
THE
RISING
ROLE
OF
PROSUMERS
IN
THE
ENERGY
SYSTEM
.
255
SVETLANA
IKONNIKOVA,
ALEXANDER
SCHLUTER,
BERNADETTE
BRANDNER
3.1
ENERGY
TRANSITION
THROUGH
DIGITALISATION
.
257
3.2
ROLE
OF
NETWORK
EFFECTS
ENHANCED
THROUGH
DIGITALISATION
.
259
3.3
NEW
OPPORTUNITIES
TO
GENERATE
ADDED
VALUE
.
262
3.4
SETTING
UP
DATA
CENTRES
AND
USING
BLOCKCHAIN
.
265
3.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
267
3.6
LITERATURE
.
269
4
THE
FOUNDATION
OF
THE
DIGITAL
TRANSFORMATION:
DATA
AND
LOT
.
271
GIORGIO
CORTIANA,
NICHOLAS
ORD
4.1
GROWTH
AND
POTENTIAL
OF
THE
LOT
.
273
4.2
DATA
BEYOND
SPECIFIC
DOMAINS
.
274
4.3
DATA
FROM
AND
TO
LOT
DEVICES
FOR CONTROLLABLE
REMOTE
OPERATION
.
275
4.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
278
4.5
LITERATURE
.
279
5
ARTIFICIAL
INTELLIGENCE
-
ENABLING
SMARTER
MUNICIPALITIES
.
281
JUAN.
BERNABE-MORENO,
THEODORAS
EVGENIOU
5.1
INTRODUCTION
.
281
5.1.1
DEFINITION
OF
AL
AND
INTELLIGENT
SYSTEMS
.
284
5.1.2
PREREQUISITES
AND
LIMITING
FACTORS
FOR
AL:
IT
'
S
ALL
ABOUT
DATA
.
285
5.1.3
TYPES
OF
PROBLEMS
AND
AL
TOOLS
.
286
5.2
AL
MAKES
OUR
MUNICIPALITIES
SMART
.
287
5.2.1
SMART
MANUFACTURING
.
288
5.2.2
SMART
BUILDINGS
.
289
5.2.3
SMART
MOBILITY
.
290
5.2.4
SMART
ENERGY
SYSTEMS
.
292
5.2.5
SMART
LOGISTICS
.
293
5.2.6
SMART
FARMING
.
294
5.2.7
SMART
WASTE
MANAGEMENT:
TOWARDS
A
CIRCULAR
ECONOMY
.
296
5.2.8
SMART
POLICE
AND
EMERGENCY
SERVICES
.
297
5.2.9
SMART
HEALTHCARE
AND
SUSTAINABILITY
.
298
5.3
THE
ADOPTION
PATH
.
300
5.3.1
ECOSYSTEM
FOR
SERVICES
DEVELOPMENT
.
301
5.3.2
PROCESSES
AND
GOVERNANCE
.
302
5.3.3
DATA
AND
TECHNOLOGY
READINESS
.
302
5.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
303
5.5
LITERATURE
.
304
VI
BECOMING
CONCRETE
1
INTEGRATING
INTERESTS
AND
FINDING
OPTIMAL
FINANCING
.
311
MARIA
GARBUZOVA-SCHLIFTER,
JAKOB
KULAWIK,
PHILIPP
BUGS,
KULDIP
SINGH,
AARON
PRAKTIKNJO
1.1
INTRODUCTION
.
311
1.2
FINANCIAL
STAKEHOLDERS
.
313
1.3
FUNDAMENTALS
OF
MUNICIPALITY
PROJECT
FINANCING
.
316
1.4
SELECTED
FINANCING
OPTIONS
.
317
1.4.1
DEBT
FINANCING
.
320
1.4.2
EQUITY
FINANCING
.
322
1.4.3
HYBRID
FINANCING
.
324
1.5
SELECTED
FUNDING
OPTIONS
.
326
1.6
SELECTED
PARTNERSHIP
MODELS
.
329
1.6.1
PUBLIC-PRIVATE
PARTNERSHIP
.
329
1.6.2
JOINT
VENTURE
.
331
1.6.3
CITIZENS
PARTICIPATION
SCHEMES
.
332
1.7
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
333
1.8
LITERATURE
.
335
2
INTERVIEWS
.
339
2.1
NICOLAS
LAHOVNIK,
WUNSIEDEL,
GERMANY
.
339
2.2
THOMAS
BUGL
AND
DR.
GOTZ
BRIIHL,
ROSENHEIM,
GERMANY
.
341
2.3
SARAH
BUTLER
AND
TREVOR
DORLING,
GREENWICH,
LONDON,
UNITED
KINGDOM
343
3
WE
MUST
ACT
-
NOW!
.
347
ALEXANDER
SCHLUTER,
JUAN
BERNABE-MORENO
LIST
OF
ABBREVIATIONS
.
349
INDEX
.
355 |
adam_txt |
FOREWORD
BY
FABRIZIO
ROSSI
.
V
FOREWORD
BY
THE
EDITORS
.
VII
FOREWORD
TO
THE
EUROPEAN
EDITION
.
VIII
EDITORS
AND
AUTHORS
.
XVII
EDITORS
AND
AUTHORS
.
XVII
AUTHORS
.
XVIII
I
FUNDAMENTALS
AND
STRATEGIC
PLANNING
1
FIRST
STEPS
TOWARDS
SMART
MUNICIPALITIES
.
3
ALEXANDER
SCHLUTER
2
VISION
OF
A
SUSTAINABLE
DIGITAL
FUTURE
.
7
MATTHEW
TIMMS,
LAURA
FARBER
2.1
CLIMATE
CHANGE
AND
ITS
CONSEQUENCES
.
7
2.2
DIGITALISATION
AND
MUNICIPALITIES
.
10
2.3
LITERATURE
.
12
3
HOW
TO
MAKE
YOUR
MUNICIPALITY
SMART
AND
SUSTAINABLE
.
15
ALEXANDER
SCHLUTER
4
STRATEGIC
PLANNING
OF
THE
TRANSFORMATION
PROCESS
.
19
DIANA
KHRIPKO,
NICKY
ATHANASSOPOULOU,
IMOH
ILEVBARE,
ROB
PHAAL
4.1
BACKGROUND
ON
STRATEGIC
ROADMAPPING
.
20
4.2
SCOPING,
DESIGN
AND
PLANNING
.
22
4.3
STRATEGIC
ROADMAPPING
.
24
4.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
31
4.5
LITERATURE
.
31
II
INTEGRATING
RENEWABLE
ENERGY
SYSTEMS
1
RENEWABLE
ENERGY
-
UNLEASHING
THE
FULL
POTENTIAL
.
37
JENS
WEIBEZAHN,
ALEXANDRA
KRUMM,
PAO-YU
OEI,
LAURA
FARBER
1.1
INTRODUCTION
.
37
1.2
TECHNO-ECONOMIC
ASPECTS
.
39
1.2.1
ELECTRICITY
SECTOR
.
40
1.2.2
HEATING
SECTOR
.
44
1.2.3
MOBILITY
SECTOR
.
45
1.3
SOCIO-ECONOMIC,
REGULATORY,
AND
POLITICAL
ASPECTS
.
46
1.4
APPLICATIONS
OF
RENEWABLE
ENERGIES
.
48
1.4.1
MAJOR
CITIES:
PHOTOVOLTAIC
POTENTIAL
IN
BERLIN
AND
URBAN
HEAT
TRANSITION
IN
HAMBURG
.
50
1.4.2
TOWNS
AND
DISTRICTS:
THE
EC
'
S
PLATFORM
FOR
COAL
REGIONS
IN
TRANSITION
AND
STEINFURT
'
S
MASTERPLAN
.
52
1.4.3
RURAL AREAS
AND
VILLAGES:
DEVELOPING
AND
EXPORTING
100
%
GREEN
ELECTRICITY
IN
SCHONAU
AND
SAMSO
.
54
1.5
TENANT
ELECTRICITY:
A
GERMAN
RENEWABLE
ENERGY
PRODUCT
.
55
1.5.1
THE
PRINCIPLE
UNDERLYING
TENANT
ELECTRICITY
.
56
1.5.2
ROLES
IN
THE
TENANT
ELECTRICITY
MODEL
.
57
1.5.3
TECHNOLOGIES,
LEGAL
REQUIREMENTS,
AND
INCENTIVES
.
58
1.5.4
METERING
AND
TECHNICAL
REQUIREMENTS
.
59
1.5.5
WHY
TENANT
ELECTRICITY
IS
ATTRACTIVE
.
59
1.6
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
60
1.7
LITERATURE
.
62
2
ELECTRICITY
GRIDS:
MOVING
TOWARDS
THE
SMART
GRID
.
65
VINCENZ
REGENER,
SIMON
KBPPL
2.1
BASIC
PRINCIPLES
OF
ELECTRICITY
GRIDS
.
65
2.1.1
PHYSICAL
ASPECTS
-
HOW
DOES
POWER
GET
FROM
A
TO
B?
.
65
2.1.2
WHAT
DOES
EUROPE
'
S
GRID
INFRASTRUCTURE
LOOK
LIKE?
.
66
2.1.3
WHAT
ARE
THE
BEGINNINGS
OF
ELECTRIC
POWER
TRANSMISSION?
.
67
2.1.4
WHAT
ARE
THE
FUNCTIONS
OF
GRID
OPERATORS?
.
68
2.1.5
WHAT
ARE
THE
CHALLENGES
THE
ENERGY
TRANSITION
POSES
TO
THE
GRID?
.
69
2.2
HOW
CAN
THE
ELECTRICITY
GRID
BE
TURNED
INTO
A
FUTURE-CAPABLE
SMART
GRID?
.
70
2.2.1
NEW,
DIGITAL
GRID
OPERATING
RESOURCES
AND
NETWORKING
.
71
2.2.2
TRANSPARENCY
FOR
HOUSEHOLDS:
WHAT
DO
SMART
METERS
DO?
.
72
2.2.3
FLEXIBILISATION
OF
GENERATION
AND
CONSUMPTION:
TO
SUPPORT,
OR
AT
LEAST
BE
COMPATIBLE
WITH
THE
GRID!
.
73
2.3
MICROGRIDS:
INNOVATIVE
DISTRICTS
AS
AN
INDIVIDUAL
SOLUTION
.
74
2.4
BEST
PRACTICE
FOR
THE
USE
OF
SMART
GRIDS
.
75
2.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
76
2.6
LITERATURE
.
77
3
THERMAL
GRIDS
.
79
HAGEN
BRAAS,
MARKUS
BILCHERL,
JANYBEK
OROZALIEV,
PEDER
BERNE
3.1
STATUS
OF
THE
HEATING
TRANSITION
IN
THE
EU
.
80
3.2
HEATING
GRIDS
NOW
AND
IN
THE
FUTURE
.
83
3.3
MODERN
DISTRICT
HEATING
.
84
3.4
CASE
STUDIES
.
87
3.4.1
100%
RENEWABLE
DISTRICT
HEATING
IN
MARSTAL
.
87
3.4.2
COMBINATION
OF
DIFFERENT
INFRASTRUCTURES
IN
LONDON
.
88
3.4.3
MALMO
'
S
DISTRICT
HEATING
SYSTEM
.
89
3.4.4
ECTOGRIDYY
IN
MEDICON
VILLAGE,
LUND
.
92
3.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
94
3.6
LITERATURE
.
96
III
USING
ENERGY
MORE
EFFICIENTLY
1
PREPARING
THE
GROUND
WITH
ENERGY
EFFICIENCY
.
101
RON-HENDRIK
HECHELMANN,
FLORIAN
SCHLOSSER,
HENNING
MESCHEDE,
ALEXANDER
SCHLUTER
1.1
ENERGY
EFFICIENCY
BASED
ON
THE
ONION
LAYER
MODEL
.
103
1.2
ENERGY
EFFICIENCY
IN
CROSS-CUTTING
TECHNOLOGIES
.
105
1.2.1
LIGHTING
.
106
1.2.2
VENTILATION
SYSTEMS
.
107
1.2.3
HEAT
PROVISION
AND
WASTE
HEAT
UTILISATION
.
109
1.2.4
COOLING
.
113
1.2.5
COMPRESSED
AIR
.
114
1.2.6
ELECTROMECHANICAL
DRIVES
.
115
1.3
LITERATURE
.
116
2
SAVING
ENERGY
IN
INDUSTRY
AND
COMMERCE
.
119
FLORIAN
SCHLOSSER,
RON-HENDRIK
HECHELMANN,
HENNING
MESCHEDE,
ALEXANDER
SCHLUTER
2.1
WHAT
CAN
INDUSTRY
AND
COMMERCE
DO
IN
CONCRETE
TERMS?
.
119
2.2
WHERE
DOES
ENERGY
EFFICIENCY
IN
THE
INDUSTRY
REACH
ITS
LIMITS?
.
124
2.3
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
125
2.4
LITERATURE
.
127
3
OPERATING
BUILDINGS
MORE
ENERGY
EFFICIENTLY
.
129
GARANCE
EMMERICH-BUNDEL,
MANUEL
LINDAUER,
RITA
STREBLOW,
ALEXANDER
SCHLUTER
3.1
BACKGROUND
.
129
3.2
MAIN
ENERGY
CONSUMPTION FACTORS
.
132
3.2.1
BUILDING
SHELL
.
133
3.2.2
HEATING,
VENTILATION,
AIR-CONDITIONING SYSTEMS
FOR
USER
COMFORT
135
3.2.3
LIGHTING
.
138
3.3
THE
ROLE
OF
DIGITAL
TECHNOLOGIES
.
139
3.4
REGULATIONS
FOR
ENERGY
EFFICIENCY
OF
BUILDINGS
.
142
3.5
CONCLUSION
AND
COURSES
OF
ACTION FOR
SMART
MUNICIPALITIES
.
145
3.6
LITERATURE
.
146
IV
LINKING
SECTORS
AND
STORING
ENERGY
1
SECTOR
COUPLING
AND
STORAGE
ARE
CRUCIAL
FOR
GREEN
ENERGY
.
151
HENNING
MESCHEDE,
DIANA
KHRIPKO,
ALEXANDER
SCHLUTER
2
STORAGE
SYSTEMS
FOR
INCREASED
FLEXIBILITY
.
157
MATTHIAS
PHILIPP,
ALEXANDER
JAGER,
ANDREAS
KIEFILING,
EGON
WESTPHAL
2.1
DEMAND
FOR
STORAGE
IN
THE
ELECTRICAL
ENERGY
SYSTEM
.
157
2.2
TECHNOLOGIES
.
162
2.3
AREAS
OF
APPLICATION
.
163
2.3.1
BATTERY
SYSTEMS
.
163
2.3.2
THERMAL
STORAGE
SYSTEMS
.
165
2.4
PRACTICAL
EXAMPLE:
"
WERKSVIERTEL
MITTE
"
IN
MUNICH
.
166
2.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
169
2.6
LITERATURE
.
171
3
USING
MORE
HYDROGEN
AND
GREEN
FUELS
.
173
EUGENIO
SCIONTI,
MATTEO
GENOVESE,
CHRISTOPH
PELLINGER,
PETRONILLA
FRAGIACOMO,
ALEXANDER
SCHLUTER
3.1
UNDERLYING
DRIVERS
.
173
KATHERINA
REICHE
3.2
INTRODUCTION
.
174
3.3
CURRENT
STATUS
AND
OUTLOOK
.
175
3.4
PRODUCTION
.
180
3.5
TRANSMISSION,
DISTRIBUTION
AND
STORAGE
INFRASTRUCTURES
.
183
3.6
APPLICATION
IN
ENERGY-INTENSIVE
INDUSTRIES
.
185
3.7
APPLICATION
IN
THE
POWER
SECTOR
.
187
3.8
APPLICATION
IN
BUILDINGS
.
189
3.9
APPLICATION
IN
AGRICULTURE
.
191
3.10
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
192
3.11
LITERATURE
.
194
4
PREPARING
FOR
MORE
SUSTAINABLE
MOBILITY
.
197
ALEXANDER
SCHLIITER,
MATTEO
GENOVESE,
PETRONILLA
FRAGIACOMO
4.1
CHALLENGES
FOR
THE
SECTOR
.
197
4.2
TECHNOLOGIES
AND
OUTLOOK
FOR
ELECTRIC
VEHICLES
.
202
4.3
CHARGING
AND
FLEXIBILITY OPTIONS
BY CONNECTING
TO
THE
ENERGY
SYSTEM
209
4.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
211
4.5
LITERATURE
.
214
5
MAKING
ENERGY
DEMAND
MORE
FLEXIBLE
.
217
DIANA
KHRIPKO,
HENNING
MESCHEDE,
EVA
MESCHEDE
5.1
IDENTIFYING
LOAD
SHIFTING
POTENTIALS
.
219
5.2
PRACTICAL
EXAMPLES
OF
A
FLEXIBILISATION
IN
THE
INDUSTRIAL
AND
TERTIARY
SECTORS
.
222
5.2.1
CONVERTING
ELECTRICAL
ENERGY
INTO
OTHER
ENERGY
FORMS
.
222
5.2.2
ADJUSTING
DEMAND
BY
SWITCHING
THE
ENERGY
SOURCE
.
224
5.2.3
FLEXIBILITY
IN
OPERATIONAL
PLANNING
AND
CONTROL
OF
ELECTRICAL
FACILITIES
.
226
5.2.4
FOCUS:
COMMERCIAL
WATER
SUPPLY
.
227
5.3
PRACTICAL
EXAMPLES
OF
FLEXIBILISATION
IN
HOUSEHOLDS
.
228
5.4
CONCLUSION
AND
OPTIONS
FOR
ACTION
FOR
SMART
MUNICIPALITIES
.
232
5.5
LITERATURE
.
235
V
DIGITALISING
MUNICIPALITIES
AND
ENERGY
SYSTEMS
1
DIGITALISATION:
THE
ISSUE
OF
OUR
TIME
.
241
VICTORIA
OSSADNIK
2
LOCAL
ENERGY
TRANSITION:
DIGITALISING
MUNICIPALITIES
.
243
MATTHEW
TIMMS,
LAURA
FARBER
2.1
DIGITALISATION
AS
KEY
ELEMENT
OF
THE
ENERGY
TRANSITION
.
243
2.1.1
DIGITALISATION
OF
ENERGY
SYSTEMS
.
244
2.1.2
DIGITALISATION
OF
ENERGY
CONSUMERS
.
245
2.1.3
TIPPING
POINTS
FOR
SIGNIFICANT
CHANGES
IN
ENERGY
SYSTEMS
.
247
2.2
TECHNOLOGIES
ACCELERATING
THE
TRANSITION
.
248
2.3
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
251
2.4
LITERATURE
.
252
3
THE
RISING
ROLE
OF
PROSUMERS
IN
THE
ENERGY
SYSTEM
.
255
SVETLANA
IKONNIKOVA,
ALEXANDER
SCHLUTER,
BERNADETTE
BRANDNER
3.1
ENERGY
TRANSITION
THROUGH
DIGITALISATION
.
257
3.2
ROLE
OF
NETWORK
EFFECTS
ENHANCED
THROUGH
DIGITALISATION
.
259
3.3
NEW
OPPORTUNITIES
TO
GENERATE
ADDED
VALUE
.
262
3.4
SETTING
UP
DATA
CENTRES
AND
USING
BLOCKCHAIN
.
265
3.5
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
267
3.6
LITERATURE
.
269
4
THE
FOUNDATION
OF
THE
DIGITAL
TRANSFORMATION:
DATA
AND
LOT
.
271
GIORGIO
CORTIANA,
NICHOLAS
ORD
4.1
GROWTH
AND
POTENTIAL
OF
THE
LOT
.
273
4.2
DATA
BEYOND
SPECIFIC
DOMAINS
.
274
4.3
DATA
FROM
AND
TO
LOT
DEVICES
FOR CONTROLLABLE
REMOTE
OPERATION
.
275
4.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
278
4.5
LITERATURE
.
279
5
ARTIFICIAL
INTELLIGENCE
-
ENABLING
SMARTER
MUNICIPALITIES
.
281
JUAN.
BERNABE-MORENO,
THEODORAS
EVGENIOU
5.1
INTRODUCTION
.
281
5.1.1
DEFINITION
OF
AL
AND
INTELLIGENT
SYSTEMS
.
284
5.1.2
PREREQUISITES
AND
LIMITING
FACTORS
FOR
AL:
IT
'
S
ALL
ABOUT
DATA
.
285
5.1.3
TYPES
OF
PROBLEMS
AND
AL
TOOLS
.
286
5.2
AL
MAKES
OUR
MUNICIPALITIES
SMART
.
287
5.2.1
SMART
MANUFACTURING
.
288
5.2.2
SMART
BUILDINGS
.
289
5.2.3
SMART
MOBILITY
.
290
5.2.4
SMART
ENERGY
SYSTEMS
.
292
5.2.5
SMART
LOGISTICS
.
293
5.2.6
SMART
FARMING
.
294
5.2.7
SMART
WASTE
MANAGEMENT:
TOWARDS
A
CIRCULAR
ECONOMY
.
296
5.2.8
SMART
POLICE
AND
EMERGENCY
SERVICES
.
297
5.2.9
SMART
HEALTHCARE
AND
SUSTAINABILITY
.
298
5.3
THE
ADOPTION
PATH
.
300
5.3.1
ECOSYSTEM
FOR
SERVICES
DEVELOPMENT
.
301
5.3.2
PROCESSES
AND
GOVERNANCE
.
302
5.3.3
DATA
AND
TECHNOLOGY
READINESS
.
302
5.4
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
303
5.5
LITERATURE
.
304
VI
BECOMING
CONCRETE
1
INTEGRATING
INTERESTS
AND
FINDING
OPTIMAL
FINANCING
.
311
MARIA
GARBUZOVA-SCHLIFTER,
JAKOB
KULAWIK,
PHILIPP
BUGS,
KULDIP
SINGH,
AARON
PRAKTIKNJO
1.1
INTRODUCTION
.
311
1.2
FINANCIAL
STAKEHOLDERS
.
313
1.3
FUNDAMENTALS
OF
MUNICIPALITY
PROJECT
FINANCING
.
316
1.4
SELECTED
FINANCING
OPTIONS
.
317
1.4.1
DEBT
FINANCING
.
320
1.4.2
EQUITY
FINANCING
.
322
1.4.3
HYBRID
FINANCING
.
324
1.5
SELECTED
FUNDING
OPTIONS
.
326
1.6
SELECTED
PARTNERSHIP
MODELS
.
329
1.6.1
PUBLIC-PRIVATE
PARTNERSHIP
.
329
1.6.2
JOINT
VENTURE
.
331
1.6.3
CITIZENS
PARTICIPATION
SCHEMES
.
332
1.7
CONCLUSION
AND
COURSES
OF
ACTION
FOR
SMART
MUNICIPALITIES
.
333
1.8
LITERATURE
.
335
2
INTERVIEWS
.
339
2.1
NICOLAS
LAHOVNIK,
WUNSIEDEL,
GERMANY
.
339
2.2
THOMAS
BUGL
AND
DR.
GOTZ
BRIIHL,
ROSENHEIM,
GERMANY
.
341
2.3
SARAH
BUTLER
AND
TREVOR
DORLING,
GREENWICH,
LONDON,
UNITED
KINGDOM
343
3
WE
MUST
ACT
-
NOW!
.
347
ALEXANDER
SCHLUTER,
JUAN
BERNABE-MORENO
LIST
OF
ABBREVIATIONS
.
349
INDEX
.
355 |
any_adam_object | 1 |
any_adam_object_boolean | 1 |
author2 | Schlüter, Alexander 1982- Bernabé-Moreno, Juan |
author2_role | edt edt |
author2_variant | a s as j b m jbm |
author_GND | (DE-588)1042647747 (DE-588)1238698549 |
author_facet | Schlüter, Alexander 1982- Bernabé-Moreno, Juan |
building | Verbundindex |
bvnumber | BV047946176 |
classification_rvk | AR 26600 RB 10909 ZP 4500 RC 10909 |
ctrlnum | (OCoLC)1288567666 (DE-599)DNB1247125726 |
discipline | Allgemeines Energietechnik Geographie |
discipline_str_mv | Allgemeines Energietechnik Geographie |
format | Book |
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genre | (DE-588)4143413-4 Aufsatzsammlung gnd-content |
genre_facet | Aufsatzsammlung |
geographic | Europa (DE-588)4015701-5 gnd |
geographic_facet | Europa |
id | DE-604.BV047946176 |
illustrated | Illustrated |
index_date | 2024-07-03T19:36:27Z |
indexdate | 2024-11-11T11:02:18Z |
institution | BVB |
isbn | 9783446472945 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-033327593 |
oclc_num | 1288567666 |
open_access_boolean | |
owner | DE-19 DE-BY-UBM DE-703 DE-210 DE-824 DE-12 DE-739 DE-523 |
owner_facet | DE-19 DE-BY-UBM DE-703 DE-210 DE-824 DE-12 DE-739 DE-523 |
physical | XXVI, 358 Seiten Illustrationen, Diagramme, Karten 25 cm |
publishDate | 2022 |
publishDateSearch | 2022 |
publishDateSort | 2022 |
publisher | Hanser |
record_format | marc |
spelling | Sustainable and smart energy systems for Europe’s cities and rural areas Alexander Schlüter, Juan Bernabé-Moreno München Hanser [2022] © 2022 XXVI, 358 Seiten Illustrationen, Diagramme, Karten 25 cm txt rdacontent n rdamedia nc rdacarrier Energieversorgung (DE-588)4014736-8 gnd rswk-swf Smart City (DE-588)1061057097 gnd rswk-swf Digitalisierung (DE-588)4123065-6 gnd rswk-swf Energieeffizienz (DE-588)7660153-5 gnd rswk-swf Erneuerbare Energien (DE-588)4068598-6 gnd rswk-swf Ländlicher Raum (DE-588)4034026-0 gnd rswk-swf Nachhaltigkeit (DE-588)4326464-5 gnd rswk-swf Europa (DE-588)4015701-5 gnd rswk-swf (DE-588)4143413-4 Aufsatzsammlung gnd-content Europa (DE-588)4015701-5 g Smart City (DE-588)1061057097 s Ländlicher Raum (DE-588)4034026-0 s Erneuerbare Energien (DE-588)4068598-6 s Energieversorgung (DE-588)4014736-8 s Nachhaltigkeit (DE-588)4326464-5 s DE-604 Energieeffizienz (DE-588)7660153-5 s Digitalisierung (DE-588)4123065-6 s Schlüter, Alexander 1982- (DE-588)1042647747 edt Bernabé-Moreno, Juan (DE-588)1238698549 edt Erscheint auch als Online-Ausgabe, EPUB 978-3-446-47176-4 Erscheint auch als Online-Ausgabe 978-3-446-47175-7 DNB Datenaustausch application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033327593&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis |
spellingShingle | Sustainable and smart energy systems for Europe’s cities and rural areas Energieversorgung (DE-588)4014736-8 gnd Smart City (DE-588)1061057097 gnd Digitalisierung (DE-588)4123065-6 gnd Energieeffizienz (DE-588)7660153-5 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Ländlicher Raum (DE-588)4034026-0 gnd Nachhaltigkeit (DE-588)4326464-5 gnd |
subject_GND | (DE-588)4014736-8 (DE-588)1061057097 (DE-588)4123065-6 (DE-588)7660153-5 (DE-588)4068598-6 (DE-588)4034026-0 (DE-588)4326464-5 (DE-588)4015701-5 (DE-588)4143413-4 |
title | Sustainable and smart energy systems for Europe’s cities and rural areas |
title_auth | Sustainable and smart energy systems for Europe’s cities and rural areas |
title_exact_search | Sustainable and smart energy systems for Europe’s cities and rural areas |
title_exact_search_txtP | Sustainable and smart energy systems for Europe’s cities and rural areas |
title_full | Sustainable and smart energy systems for Europe’s cities and rural areas Alexander Schlüter, Juan Bernabé-Moreno |
title_fullStr | Sustainable and smart energy systems for Europe’s cities and rural areas Alexander Schlüter, Juan Bernabé-Moreno |
title_full_unstemmed | Sustainable and smart energy systems for Europe’s cities and rural areas Alexander Schlüter, Juan Bernabé-Moreno |
title_short | Sustainable and smart energy systems for Europe’s cities and rural areas |
title_sort | sustainable and smart energy systems for europe s cities and rural areas |
topic | Energieversorgung (DE-588)4014736-8 gnd Smart City (DE-588)1061057097 gnd Digitalisierung (DE-588)4123065-6 gnd Energieeffizienz (DE-588)7660153-5 gnd Erneuerbare Energien (DE-588)4068598-6 gnd Ländlicher Raum (DE-588)4034026-0 gnd Nachhaltigkeit (DE-588)4326464-5 gnd |
topic_facet | Energieversorgung Smart City Digitalisierung Energieeffizienz Erneuerbare Energien Ländlicher Raum Nachhaltigkeit Europa Aufsatzsammlung |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=033327593&sequence=000001&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT schluteralexander sustainableandsmartenergysystemsforeuropescitiesandruralareas AT bernabemorenojuan sustainableandsmartenergysystemsforeuropescitiesandruralareas |