Alternative pavement heating technique using renewable energy in North Dakota
Hydronic heating pavement (HHP) is considered to be more sustainable and environmental-friendly for de-icing or pavement heating. The more efficient approach is to use deep direct-use geothermal energy due to the high temperature and clean. In western North Dakota, several aquifers have been identif...
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doaj-025293be8c944cb784640950917d50e42021-04-02T20:25:43ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012050601410.1051/e3sconf/202020506014e3sconf_icegt2020_06014Alternative pavement heating technique using renewable energy in North DakotaHo I-Hsuan0Li Sheng1Ma Li2Geology and Geological Engineering, University of North DakotaCivil Engineering, Lanzhou Jiaotong University, Visiting Scholar, University of North DakotaCivil Engineering, Lanzhou Jiaotong University, Visiting Scholar, University of North DakotaHydronic heating pavement (HHP) is considered to be more sustainable and environmental-friendly for de-icing or pavement heating. The more efficient approach is to use deep direct-use geothermal energy due to the high temperature and clean. In western North Dakota, several aquifers have been identified to provide geothermal hot water ranging from 34°C to 140°C within 2300 m below the ground surface. The current technique has made it feasible to utilize the hot water for power generation. Besides drilling new wells, the higher temperature water exits from power plant still has up to 70ºC. This temperature enables the valuable applications to cascading use for other purposes such as space heating, snow-melting for transportation infrastructure etc. This paper mainly focuses on studying the challenges of an HHP using geothermal water. Parametric studies using finite element analysis were conducted. Considering the high heat demands in western North Dakota due to the extreme weather, the suitable water temperatures, pipes layouts, mechanical properties of piped pavement, volumetric flow rates and thermal conductivity of pavement were analysed. The optimization of the HHP subject to different weather conditions and new findings are summarized and discussed.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/65/e3sconf_icegt2020_06014.pdf |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ho I-Hsuan Li Sheng Ma Li |
spellingShingle |
Ho I-Hsuan Li Sheng Ma Li Alternative pavement heating technique using renewable energy in North Dakota E3S Web of Conferences |
author_facet |
Ho I-Hsuan Li Sheng Ma Li |
author_sort |
Ho I-Hsuan |
title |
Alternative pavement heating technique using renewable energy in North Dakota |
title_short |
Alternative pavement heating technique using renewable energy in North Dakota |
title_full |
Alternative pavement heating technique using renewable energy in North Dakota |
title_fullStr |
Alternative pavement heating technique using renewable energy in North Dakota |
title_full_unstemmed |
Alternative pavement heating technique using renewable energy in North Dakota |
title_sort |
alternative pavement heating technique using renewable energy in north dakota |
publisher |
EDP Sciences |
series |
E3S Web of Conferences |
issn |
2267-1242 |
publishDate |
2020-01-01 |
description |
Hydronic heating pavement (HHP) is considered to be more sustainable and environmental-friendly for de-icing or pavement heating. The more efficient approach is to use deep direct-use geothermal energy due to the high temperature and clean. In western North Dakota, several aquifers have been identified to provide geothermal hot water ranging from 34°C to 140°C within 2300 m below the ground surface. The current technique has made it feasible to utilize the hot water for power generation. Besides drilling new wells, the higher temperature water exits from power plant still has up to 70ºC. This temperature enables the valuable applications to cascading use for other purposes such as space heating, snow-melting for transportation infrastructure etc. This paper mainly focuses on studying the challenges of an HHP using geothermal water. Parametric studies using finite element analysis were conducted. Considering the high heat demands in western North Dakota due to the extreme weather, the suitable water temperatures, pipes layouts, mechanical properties of piped pavement, volumetric flow rates and thermal conductivity of pavement were analysed. The optimization of the HHP subject to different weather conditions and new findings are summarized and discussed. |
url |
https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/65/e3sconf_icegt2020_06014.pdf |
work_keys_str_mv |
AT hoihsuan alternativepavementheatingtechniqueusingrenewableenergyinnorthdakota AT lisheng alternativepavementheatingtechniqueusingrenewableenergyinnorthdakota AT mali alternativepavementheatingtechniqueusingrenewableenergyinnorthdakota |
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