Ali Chabuk
Luleå University of Technology
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Featured researches published by Ali Chabuk.
Waste Management & Research | 2016
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Sven Knutsson; Roland Pusch
Al-Hillah Qadhaa is located in the central part of Iraq. It covers an area of 908 km2 with a total population of 856,804 inhabitants. This Qadhaa is the capital of Babylon Governorate. Presently, no landfill site exists in that area based on scientific site selection criteria. For this reason, an attempt has been carried out to find the best locations for landfills. A total of 15 variables were considered in this process (groundwater depth, rivers, soil types, agricultural land use, land use, elevation, slope, gas pipelines, oil pipelines, power lines, roads, railways, urban centres, villages and archaeological sites) using a geographic information system. In addition, an analytical hierarchy process was used to identify the weight for each variable. Two suitable candidate landfill sites were determined that fulfil the requirements with an area of 9.153 km2 and 8.204 km2. These sites can accommodate solid waste till 2030.
Journal of civil engineering and architecture | 2017
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Suhair Kamaleddin; Sven Knutsson; Roland Pusch; Jan Laue
The Babylon Governorate is situated in the middle of Iraq. It covers an area of 5,315 km2 and has 2,092,998 inhabitants distributed throughout its five major cities (Qadhaa). Presently, there is no ...
Journal of civil engineering and architecture | 2016
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Sven Knutsson; Roland Pusch
The selection of a landfill site is considered as a complicated task because this process is based on many factors and restrictions. For Al-Qasim Qadhaa, which is situated in the southern part of the Babylon Governorate, Iraq, there is no landfill site in that area that conforms to the scientific criteria for selecting sites for landfill. For this reason, 15 criteria were adopted in this study (groundwater depth, rivers, soil types, agriculture lands use, land use, elevation, slope, gas pipelines, oil pipelines, power lines, roads, railways, urban centers, villages and archaeological sites) using GIS (geographic information system), which has a large ability to manage input data. In addition, the AHP (analytical hierarchy process) method was used to derive the relative weightings for each criterion using pair-wise comparison. To obtain the suitability index for candidate landfill sites, a weighted linear combination method was used. After combining these methods, two suitable candidate landfill sites, with areas of 2.766 km2 and 2.055 km2, respectively, were found to satisfy the scientific and environmental requirements. The area of these sites can accommodate solid waste from 2020 until 2030 based on the required area, which was 0.702 km2.
Engineering | 2015
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Sven Knutsson; Roland Pusch
Sustainability | 2017
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Sven Knutsson; Roland Pusch; Jan Laue
Environmental Earth Sciences | 2017
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Sven Knutsson; Roland Pusch
Sustainability | 2017
Huda M. Madhloom; Nadhir Al-Ansari; Jan Laue; Ali Chabuk
Engineering | 2017
Ali Chabuk; Nadhir Al-Ansari; Hussain Musa Hussain; Sven Knutsson; Roland Pusch; Jan Laue
Sustainability | 2018
Ali Chabuk; Nadhir Al-Ansari; Mohammad Ezz-Aldeen; Jan Laue; Roland Pusch; Hussain Musa Hussain; Sven Knutsson
Journal of Earth Sciences and Geotechnical Engineering | 2017
Ali Chabuk; Nadhir Al-Ansari; Hussein M. Hussein; Sven Knutsson; Roland Pusch; Jan Laue