Mathematical modelling and optimization of the Distributed Energy Supply System (DESS) using natural gas, both at the building level and the overall energy supply network level was carried out for various types of micro combined heat and power (micro-CHP) – solid oxide fuel cells, Stirling engines, internal combustion engines – and for two different operating strategies – cost-driven and primary energy-driven. The modelling framework captures the overall impact of the adoption of micro-CHP systems on the total primary energy usage in both generation and distribution. A detailed case study on the UK domestic energy supply was undertaken by applying both operating strategies to four different sizes of houses. The best technology selected in e...
A sustainable energy system defines the pattern of energy generation and uses that can be sustained ...
In this paper, an energy and economic analysis of micro-CHP systems is presented, to evaluate their ...
The authors would like to thank the European Commission for partial funding under the Horizon 2020 P...
Mathematical modelling and optimization of the Distributed Energy Supply System (DESS) using natural...
Mathematical modelling and optimization of the natural gas based Distributed Energy Supply System (D...
AbstractOne of the most promising technologies for reducing energy consumption is combined heat and ...
The limitation of the greenhouse effect and global warming will be the most important and challengin...
The research center of Zero Emissions Buildings (ZEB) has a goal of eliminating the greenhouse gas e...
The growing worldwide demand for less polluting forms of energy has led to a renewed interest in the...
A number of technologies have been embarked upon for combating the problems of escalating energy req...
The research center of Zero Emissions Buildings (ZEB) has a goal of eliminating the greenhouse gas e...
The research center of Zero Emissions Buildings (ZEB) has a goal of eliminating the greenhouse gas e...
This thesis considers the techno-economic feasibility of micro combine heat and power (micro-CHP) un...
AbstractOne of the most promising technologies for reducing energy consumption is combined heat and ...
This paper presents an analysis aimed to evaluate the feasibility of micro-CHP systems to meet house...
A sustainable energy system defines the pattern of energy generation and uses that can be sustained ...
In this paper, an energy and economic analysis of micro-CHP systems is presented, to evaluate their ...
The authors would like to thank the European Commission for partial funding under the Horizon 2020 P...
Mathematical modelling and optimization of the Distributed Energy Supply System (DESS) using natural...
Mathematical modelling and optimization of the natural gas based Distributed Energy Supply System (D...
AbstractOne of the most promising technologies for reducing energy consumption is combined heat and ...
The limitation of the greenhouse effect and global warming will be the most important and challengin...
The research center of Zero Emissions Buildings (ZEB) has a goal of eliminating the greenhouse gas e...
The growing worldwide demand for less polluting forms of energy has led to a renewed interest in the...
A number of technologies have been embarked upon for combating the problems of escalating energy req...
The research center of Zero Emissions Buildings (ZEB) has a goal of eliminating the greenhouse gas e...
The research center of Zero Emissions Buildings (ZEB) has a goal of eliminating the greenhouse gas e...
This thesis considers the techno-economic feasibility of micro combine heat and power (micro-CHP) un...
AbstractOne of the most promising technologies for reducing energy consumption is combined heat and ...
This paper presents an analysis aimed to evaluate the feasibility of micro-CHP systems to meet house...
A sustainable energy system defines the pattern of energy generation and uses that can be sustained ...
In this paper, an energy and economic analysis of micro-CHP systems is presented, to evaluate their ...
The authors would like to thank the European Commission for partial funding under the Horizon 2020 P...