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direct solar access (keyword)
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1
book article
Computational method for variable objectives and context aware solar envelopes generation
De Luca, Francesco
;
Voll, Hendrik
2017 Proceedings of the Symposium on Simulation for Architecture and Urban Design
2017
/
p. 335-342 : ill
http://resolver.tudelft.nl/uuid:4857e388-c354-47a3-9671-0bd8038f76bc
book article
2
book article EST
/
book article ENG
Facade-floor-cluster methodology for determining optimal building clusters for solar access and floor plan layout in urban environments
De Luca, Francesco
;
Nejur, Andrei
;
Dogan, Timur
eCAADe 2018 : Computing for a better tomorrow : proceedings of the 36th International Conference on Education and Research in Computer Aided Architectural Design in Europe : 19th-21st September 2018, Łódź, Poland, Faculty of Civil Engineering, Architecture and Environmental Engineering, Lodz University of Technology ; Vol. 2
2018
/
p. 585-594
https://doi.org/10.52842/conf.ecaade.2018.2.585
Conference Proceedings at Scopus
Article at Scopus
book article EST
/
book article ENG
3
book article EST
/
book article ENG
From envelope to layout : buildings massing and layout generation for solar access in urban environments
De Luca, Francesco
eCAADe 2017 : ShoCK! : Sharing of Computable Knowledge : proceedings of the 35th International Conference on Education and Research in Computer Aided Architectural Design in Europe : 20th-22nd September 2017, Rome, Italy. Volume 2
2017
/
p. 431-440 : ill
https://doi.org/10.52842/conf.ecaade.2017.2.431
Conference proceedings at Scopus
Article at Scopus
Article at WOS
book article EST
/
book article ENG
4
journal article EST
/
journal article ENG
A novel solar envelope method based on solar ordinances for urban planning
De Luca, Francesco
;
Dogan, Timur
Building Simulation
2019
/
p. 817 - 834
https://doi.org/10.1007/s12273-019-0561-1
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
journal article EST
/
journal article ENG
5
book article EST
/
book article ENG
Solar collection multi-isosurface method : computational design advanced method for the prediction of direct solar access in urban environments
De Luca, Francesco
;
Voll, Hendrik
Computer-Aided Architectural Design : Future Trajectories : 17th International Conference, CAAD Futures 2017, Istanbul, Turkey, July 12-14, 2017 : selected papers
2017
/
p. 170-187 : ill
https://doi.org/10.1007/978-981-10-5197-5_10
Conference proceedings at Scopus
Article at Scopus
book article EST
/
book article ENG
6
book article
Solar collection multi-isosurface method : computational design advanced method for the prediction of direct solar access in urban environments
De Luca, Francesco
;
Voll, Hendrik
Future Trajectories of Computation in Design : 17th International Conference, CAAD Futures 2017, Istanbul, July 12-14, 2017 : proceedings
2017
/
p. 225
http://caadfutures2017.itu.edu.tr/wp-content/uploads/2017/09/CAADFutures2017_Proceedings-updated-20092017.pdf
book article
7
book article
Solar envelope optimization method for complex urban environments
De Luca, Francesco
CAADence in architecture : back to command : proceedings of the International Conference on Computer Aided Architectural Design : 16-17 June 2016, Budapest, Hungary, Faculty of Architecture, Budapest University of Technology and Economics. 2nd ed
2016
/
p. 195-201 : ill
http://dx.doi.org/10.3311/CAADence.1657
book article
Number of records 7, displaying
1 - 7
keyword
162
1.
direct solar access
2.
solar access
3.
behavioral sciences direct and transposed forms
4.
direct air capture
5.
direct and transposed forms
6.
direct aqueous carbonation
7.
direct bonding
8.
direct conductor cooling
9.
direct cooling
10.
direct current (DC) building
11.
direct current microgrid
12.
direct current motor
13.
direct democracy
14.
direct density ratio estimation
15.
direct discovery
16.
direct energy deposition
17.
direct field-oriented control (DFOC)
18.
direct foaming
19.
direct georeferencing
20.
direct ink writing
21.
direct instruction
22.
direct laser writing
23.
direct matrix type
24.
direct method
25.
direct methods
26.
direct oral anticoagulants
27.
direct product
28.
direct torque control
29.
direct torque control (DTC)
30.
direct-drive
31.
direct-to-consumer genetic tests
32.
foreign direct investment (FDI)
33.
foreign direct investments
34.
high voltage direct current (HVDC)
35.
subgroups of direct products
36.
zero direct axis current (ZDAC)
37.
access charging
38.
access control
39.
access to adult education
40.
access to facilities
41.
access to healthcare
42.
access to information
43.
access to justice
44.
access to market regulation
45.
broadband Internet access
46.
carrier sense multiple access/collision avoidance (CSMA/CA)
47.
chip access
48.
energy access
49.
integrated access and backhaul
50.
internet access
51.
market access
52.
Media Access Control (MAC)
53.
medium access control
54.
medium access control (MAC)
55.
multi-access edge computing
56.
multi-access edge computing (MEC)
57.
network access charges
58.
Non Orthogonal Multiple Access (NOMA)
59.
nonorthogonal multiple access (NOMA)
60.
Non-Orthogonal Multiple Access (NOMA)
61.
online records access
62.
Orthogonal Multiple Access (OMA)
63.
patient access
64.
patients’ online record access
65.
radio access network
66.
radio access network (RAN)
67.
radio access network subslicing
68.
radio access networks
69.
random access memory
70.
scheduled access
71.
time division multiple access (TDMA)
72.
topographic access to open stacks
73.
transborder access
74.
unauthorized access
75.
vascular access
76.
web-based record access
77.
CdS/CdTe solar cell
78.
CdS/Sb2Se3 thin film solar cells
79.
CdS–CdTe solar cell
80.
chalcogenide solar cells
81.
chalcopyrite solar cell
82.
chalcopyrite thin film solar cells
83.
CIGS solar cell
84.
concentrated solar power
85.
Cu2ZnSnSe4 solar cells
86.
electric solar wind sail
87.
flexible solar cells
88.
Hybrid solar cell
89.
hybrid solar cells
90.
hybrid thin film solar cells
91.
inorganic nanostructured solar cell
92.
integration of solar power plants
93.
monograin layer solar cell
94.
monograin layer solar cells
95.
passive solar control
96.
Perovskite solar cells
97.
reverse solar envelope
98.
Sb2S3 solar cells
99.
Sb2Se3 thin film solar cell
100.
semitransparent solar cells
101.
solar
102.
solar absorbers
103.
solar architecture
104.
solar cell
105.
solar cell efficiency
106.
solar cells
107.
solar cells efficiency
108.
solar collection
109.
solar collector
110.
solar collectors
111.
solar converter
112.
solar cooling
113.
solar design
114.
solar electricity production potential
115.
solar energy
116.
solar energy materials
117.
solar energy utilization
118.
Solar energymaterials
119.
solar envelope
120.
solar envelopes
121.
solar exposure
122.
solar gains
123.
solar geometry
124.
solar heat
125.
solar heat gains
126.
solar inverter
127.
solar irradiance
128.
solar irradiation
129.
solar modules
130.
solar panel
131.
solar panels
132.
solar penetration
133.
solar photovoltaic
134.
solar photovoltaic (PV)
135.
solar photovoltaic efficiency enhancement
136.
solar photovoltaic energy
137.
solar photovoltaics
138.
solar physics
139.
solar power
140.
solar power forecasting
141.
solar power generation
142.
solar power plant integration
143.
solar PV
144.
solar PV energy
145.
solar radiation
146.
solar roadway
147.
solar shading
148.
solar thermal
149.
Solar thermal systems
150.
Solar tracking system
151.
solar wind
152.
solar windows
153.
solar-wind tower
154.
space-based solar power
155.
subtractive solar envelopes
156.
sustainable solar cells
157.
thin film inorganic solar cells
158.
thin film solar cell
159.
Thin film solar cells
160.
thin-film solar cells
161.
TiO2/CuxO solar cells
162.
variable wind and solar energy
subject term
7
1.
Access (tarkvara)
2.
European Access Network
3.
Bridgestone World Solar Challenge
4.
Bridgestone World Solar Challenge (võistlus)
5.
Roofit.solar
6.
Solaride III EnefitBridgestone World Solar Challenge (võistlus)
7.
World Solar Challenge
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