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  • Search: subject:"Water Flow"
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Year of publication
Subject
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Combined heat and power 2 Environmental Economics and Policy 2 Exergy 2 Murray-Darling Basin 2 Performance analysis 2 Photovoltaic/thermal module 2 Resource /Energy Economics and Policy 2 Water flow rate 2 carbon sequestration 2 forest plantation 2 irrigated agriculture 2 trade-off 2 water flow 2 Agriculture 1 Algorithm 1 Algorithmus 1 Deutschland 1 Electric power industry 1 Elektrizitätswirtschaft 1 Germany 1 Kraft-Wärme-Kopplung 1 Landwirtschaft 1 Location-assignment-routing problem 1 Mathematical programming 1 Mathematische Optimierung 1 OR in agriculture 1 Tourenplanung 1 Vehicle routing problem 1 Wasser 1 Wasserversorgung 1 Wasserwirtschaft 1 Water 1 Water flow algorithm 1 Water industry 1 Water supply 1
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Online availability
All
Free 5 CC license 1
Type of publication
All
Article 3 Book / Working Paper 2
Type of publication (narrower categories)
All
Article in journal 2 Aufsatz in Zeitschrift 2 Article 1 Conference paper 1 Konferenzbeitrag 1
Language
All
English 3 Undetermined 2
Author
All
Adamson, David 2 Schrobback, Peggy 2 Attakorn Asanakham 1 Duc Chinh Phung 1 Nguyen, Thu Ba T. 1 Quiggin, John 1 Quiggin, John C. 1 Thi Hoa Sen Le 1 Thoranis Deethayat 1 Tran, Trung Hieu 1
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Institution
All
Australian Agricultural and Resource Economics Society - AARES 1 School of Economics, University of Queensland 1
Published in...
All
2009 Conference (53rd), February 11-13, 2009, Cairns, Australia 1 Energy Reports 1 Energy reports 1 European journal of operational research : EJOR 1 Risk and Sustainable Management Group Working Papers 1
Source
All
ECONIS (ZBW) 2 RePEc 2 EconStor 1
Showing 1 - 5 of 5
Cover Image
Formulation and solution technique for agricultural waste collection and transport network design
Tran, Trung Hieu; Nguyen, Thu Ba T.; Thi Hoa Sen Le; … - In: European journal of operational research : EJOR 313 (2024) 3, pp. 1152-1169
Persistent link: https://www.econbiz.de/10014456686
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Performance analysis of PV/T modules with and without glass cover and effect of mass flow rate on electricity and hot water generation
In: Energy Reports 6 (2020) 2, pp. 558-564
Two types of hybrid photovoltaic/thermal (PV/T) modules, with and without glass cover for generating hot water and electricity (combined heat and power, CHP) were tested to investigate power generation performance in terms of generated power (Pe) with module temperature (Tm) and solar radiation...
Persistent link: https://www.econbiz.de/10012652294
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Cover Image
Performance analysis of PV/T modules with and without glass cover and effect of mass flow rate on electricity and hot water generation
Attakorn Asanakham; Thoranis Deethayat - In: Energy reports 6 (2020) 2, pp. 558-564
Two types of hybrid photovoltaic/thermal (PV/T) modules, with and without glass cover for generating hot water and electricity (combined heat and power, CHP) were tested to investigate power generation performance in terms of generated power (Pe) with module temperature (Tm) and solar radiation...
Persistent link: https://www.econbiz.de/10012181202
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Cover Image
Turning Water into Carbon: Carbon sequestration vs. water flow in the Murray-Darling Basin
Schrobback, Peggy; Adamson, David; Quiggin, John C. - Australian Agricultural and Resource Economics Society … - 2009
Large scale forest plantations in the Murray-Darling Basin may be embraced as a carbon sequestration mechanism under a Carbon Pollution Reduction Scheme. However, increased tree plantation will be associated with reduced inflows to river systems because of increased transpiration, interception...
Persistent link: https://www.econbiz.de/10005536560
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Cover Image
Turning Water into Carbon: Carbon sequestration vs. Water Flow in the Murray Darling Basin
Schrobback, Peggy; Adamson, David; Quiggin, John - School of Economics, University of Queensland - 2009
Large scale forest plantations in the Murray-Darling Basin may be embraced as a carbon sequestration mechanism under a Carbon Pollution Reduction Scheme. However, increased tree plantation will be associated with reduced inflows to river systems because of increased transpiration, interception...
Persistent link: https://www.econbiz.de/10010910977
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