Large amounts of waste heat, below 120 °C, are released globally by industry. To convert this low-temperature waste heat to power, thermally regenerative flow batteries (TRFBs) have recently been studied. Most analyses focus on either the discharging or the regeneration phase. However, both phases have to be considered to holistically assess the performance of the flow battery. Therefore, a dynamic, open-access, full-cycle model of a Cu–NH3 TRFB is developed in Modelica and validated with data from the literature. Based on the validated model, a trade-off between power density and efficiency is shown that depends only on the discharging strategy of the flow battery. For a sensible heat source with an inlet temperature of 120 °C and heat tra...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
Large amounts of waste heat, below 120 °C, are released globally by industry. To convert this low-te...
It is widely accepted that one of the most important issue to be faced by the scientific community i...
It is widely accepted that one of the most important issue to be faced by the scientific community i...
Harvesting waste heat with temperatures lower than 100 °C can improve the system efficiency and redu...
An important part of the electricity production relies on heat conversion. Indeed power plants burn ...
Global energy consumption is continually increasing, and intelligent energy supply is a critical con...
Here we assess the route to convert low grade waste heat (< 100 °C) into electricity by leveragin...
Here we assess the route to convert low grade waste heat (< 100 °C) into electricity by leveragin...
Redox flow batteries (RFBs) are rugged systems, which can withstand several thousand cycles and last...
Global energy consumption is continually increasing, and intelligent energy supply is a critical co...
The \u201cthermally regenerable batteries\u201d have been proposed for exploiting the heat sources a...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
Large amounts of waste heat, below 120 °C, are released globally by industry. To convert this low-te...
It is widely accepted that one of the most important issue to be faced by the scientific community i...
It is widely accepted that one of the most important issue to be faced by the scientific community i...
Harvesting waste heat with temperatures lower than 100 °C can improve the system efficiency and redu...
An important part of the electricity production relies on heat conversion. Indeed power plants burn ...
Global energy consumption is continually increasing, and intelligent energy supply is a critical con...
Here we assess the route to convert low grade waste heat (< 100 °C) into electricity by leveragin...
Here we assess the route to convert low grade waste heat (< 100 °C) into electricity by leveragin...
Redox flow batteries (RFBs) are rugged systems, which can withstand several thousand cycles and last...
Global energy consumption is continually increasing, and intelligent energy supply is a critical co...
The \u201cthermally regenerable batteries\u201d have been proposed for exploiting the heat sources a...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...
This paper presents the optimization of organic Rankine cycles (ORCs) for recovering waste heat from...