Solar Collection Multi-isosurface Method - Computational Design Advanced Method for the Prediction of Direct Solar Access in Urban Environments. Luca, F. D. & Voll, H. In Çagdas, G., Özkar, M., Gül, L. F., & Gürer, E., editors, CAAD Futures, volume 724, of Communications in Computer and Information Science, pages 170-187, 2017. Springer.
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Paper bibtex @inproceedings{conf/caad-futures/LucaV17,
added-at = {2023-09-08T00:00:00.000+0200},
author = {Luca, Francesco De and Voll, Hendrik},
biburl = {https://www.bibsonomy.org/bibtex/2afdef95863bdd4e8079629f3f283ec90/dblp},
booktitle = {CAAD Futures},
crossref = {conf/caad-futures/2017},
editor = {Çagdas, Gülen and Özkar, Mine and Gül, Leman Figen and Gürer, Ethem},
ee = {https://doi.org/10.1007/978-981-10-5197-5_10},
interhash = {a08971017b0dceb8289b72d3436a3dbc},
intrahash = {afdef95863bdd4e8079629f3f283ec90},
isbn = {978-981-10-5197-5},
keywords = {dblp},
pages = {170-187},
publisher = {Springer},
series = {Communications in Computer and Information Science},
timestamp = {2024-04-09T17:34:04.000+0200},
title = {Solar Collection Multi-isosurface Method - Computational Design Advanced Method for the Prediction of Direct Solar Access in Urban Environments.},
url = {http://dblp.uni-trier.de/db/conf/caad-futures/caad-futures2017.html#LucaV17},
volume = 724,
year = 2017
}
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