Frequent fluctuations of CNG engine operating conditions make the waste heat source have uncertain, nonlinear, and strong coupling characteristics. These characteristics are not conducive to the efficient recovery of the DORC system. The systematic evaluation of the CNG engine waste heat source and the comprehensive performance of the DORC system is conducive to the efficient use of waste heat. Based on the theory of internal combustion (IC) engine thermal balance, this paper analyzes the dynamic characteristics of compressed natural gas (CNG) engine waste heat energy under full operating conditions. Then, based on the operating characteristics of the dual loop organic Rankine cycle (DORC) system, thermodynamic models, heat transfer models,...
The organic Rankine cycle (ORC) can be used to recover the waste heat from a stationary compressed n...
This investigation shows a traditional and advanced exergetic assessment of a waste heat recovery sy...
The Organic Rankine Cycle (ORC) has been proved a promising technique to exploit waste heat from Int...
The improvement of the overall utilization rate of compressed natural gas (CNG) engine fuel is the b...
A dual loop organic Rankine cycle (DORC) system is designed to recover waste heat from a heavy-duty ...
In this study, a dual loop ORC (organic Rankine cycle) system is adopted to recover exhaust energy, ...
A novel dual-loop organic Rankine cycle (DORC) is proposed in this study, which consists a high-temp...
Waste heats of an internal combustion engine (ICE) are recovered by a dual-loop organic Rankine cycl...
This paper presents a thermo-economic analysis of a simple organic Rankine cycle (SORC) as a waste h...
In this article, an organic Rankine cycle (ORC) was integrated into a 2-MW natural gas engine to eva...
This paper presents a model system TEG-DORC that employs thermoelectric generator (TEG) as a toppin...
This manuscript presents an advanced exergo-economic analysis of a waste heat recovery system based ...
The Organic Rankine Cycle (ORC) is regarded as a suitable way to recover waste heat from gaseous fue...
A novel transcritical cascade-Organic Rankine Cycle (C-ORC) system was proposed to recover multi-gra...
A novel transcritical cascade-Organic Rankine Cycle (C-ORC) system was proposed for recovering multi...
The organic Rankine cycle (ORC) can be used to recover the waste heat from a stationary compressed n...
This investigation shows a traditional and advanced exergetic assessment of a waste heat recovery sy...
The Organic Rankine Cycle (ORC) has been proved a promising technique to exploit waste heat from Int...
The improvement of the overall utilization rate of compressed natural gas (CNG) engine fuel is the b...
A dual loop organic Rankine cycle (DORC) system is designed to recover waste heat from a heavy-duty ...
In this study, a dual loop ORC (organic Rankine cycle) system is adopted to recover exhaust energy, ...
A novel dual-loop organic Rankine cycle (DORC) is proposed in this study, which consists a high-temp...
Waste heats of an internal combustion engine (ICE) are recovered by a dual-loop organic Rankine cycl...
This paper presents a thermo-economic analysis of a simple organic Rankine cycle (SORC) as a waste h...
In this article, an organic Rankine cycle (ORC) was integrated into a 2-MW natural gas engine to eva...
This paper presents a model system TEG-DORC that employs thermoelectric generator (TEG) as a toppin...
This manuscript presents an advanced exergo-economic analysis of a waste heat recovery system based ...
The Organic Rankine Cycle (ORC) is regarded as a suitable way to recover waste heat from gaseous fue...
A novel transcritical cascade-Organic Rankine Cycle (C-ORC) system was proposed to recover multi-gra...
A novel transcritical cascade-Organic Rankine Cycle (C-ORC) system was proposed for recovering multi...
The organic Rankine cycle (ORC) can be used to recover the waste heat from a stationary compressed n...
This investigation shows a traditional and advanced exergetic assessment of a waste heat recovery sy...
The Organic Rankine Cycle (ORC) has been proved a promising technique to exploit waste heat from Int...