A computational network heat transfer model was utilised to model the potential of heat energy recovery at multiple locations from a city scale combined sewer network. The uniqueness of this network model lies in its whole system validation and implementation for seasonal scenarios in a large sewer network. The network model was developed, on the basis of a previous single pipe heat transfer model, to make it suitable for application in large sewer networks and its performance was validated in this study by predicting the wastewater temperature variation across the network. Since heat energy recovery in sewers may impact negatively on wastewater treatment processes, the viability of large scale heat recovery was assessed by examining the di...
Around 90% of the energy requirement for urban water systems management is for heating domestic tap ...
Wastewater offers the potential of a widespread resource for low-temperature waste heat, with wastew...
The UK heating sector must be completely decarbonized by 2050. The deployment of low carbon heat is ...
A computational network heat transfer model was utilised to model the potential of heat energy recov...
YesThis paper describes a new heat transfer parameterisation between wastewater and insewer air base...
Warm water is an important factor in the water and energy nexus. The energy used to produce warm tap...
Heat recovery from wastewater is a robust and straightforward strategy to reduce water-related energ...
Majority of the energy consumed for urban water services is used to heat tap water. In order to allo...
The vast majority of the energy consumed for urban water services is used to heat tap water. Heat re...
The purpose of this thesis is to estimate how much heat can be recovered from the sewer system in Ma...
The vast majority of the energy consumed for urban water services is used to heat tap water. Heat re...
Thermal-hydraulic considerations in urban drainage networks are essential to utilise available heat ...
The pressing need of implementing climate change act and a commitment to increase renewable energy h...
NoModelling of wastewater temperatures along a sewer pipe using energy balance equations and assumin...
Heat recovery from combined sewers has a significant potential for practical renewable energy provis...
Around 90% of the energy requirement for urban water systems management is for heating domestic tap ...
Wastewater offers the potential of a widespread resource for low-temperature waste heat, with wastew...
The UK heating sector must be completely decarbonized by 2050. The deployment of low carbon heat is ...
A computational network heat transfer model was utilised to model the potential of heat energy recov...
YesThis paper describes a new heat transfer parameterisation between wastewater and insewer air base...
Warm water is an important factor in the water and energy nexus. The energy used to produce warm tap...
Heat recovery from wastewater is a robust and straightforward strategy to reduce water-related energ...
Majority of the energy consumed for urban water services is used to heat tap water. In order to allo...
The vast majority of the energy consumed for urban water services is used to heat tap water. Heat re...
The purpose of this thesis is to estimate how much heat can be recovered from the sewer system in Ma...
The vast majority of the energy consumed for urban water services is used to heat tap water. Heat re...
Thermal-hydraulic considerations in urban drainage networks are essential to utilise available heat ...
The pressing need of implementing climate change act and a commitment to increase renewable energy h...
NoModelling of wastewater temperatures along a sewer pipe using energy balance equations and assumin...
Heat recovery from combined sewers has a significant potential for practical renewable energy provis...
Around 90% of the energy requirement for urban water systems management is for heating domestic tap ...
Wastewater offers the potential of a widespread resource for low-temperature waste heat, with wastew...
The UK heating sector must be completely decarbonized by 2050. The deployment of low carbon heat is ...