[HTML][HTML] Dynamic modeling and control strategies of organic Rankine cycle systems: Methods and challenges

M Imran, R Pili, M Usman, F Haglind - Applied energy, 2020 - Elsevier
Organic Rankine cycle systems are suitable technologies for utilization of low/medium-
temperature heat sources, especially for small-scale systems. Waste heat from engines in …

A survey on waste heat recovery: Electric power generation and potential prospects within Pakistan

K Zeb, SM Ali, B Khan, CA Mehmood, N Tareen… - … and Sustainable Energy …, 2017 - Elsevier
Waste heat recovery system plays a pivotal role for heat extractions in every energy
consuming sector. Thermo-Electric Module converts this waste heat into useful work done as …

Transient dynamic modeling and validation of an organic Rankine cycle waste heat recovery system for heavy duty diesel engine applications

B Xu, D Rathod, S Kulkarni, A Yebi, Z Filipi, S Onori… - Applied Energy, 2017 - Elsevier
This paper presents a dynamic organic Rankine cycle waste heat recovery (ORC-WHR)
Simulink® model and an engine model for heavy-duty diesel applications. The dynamic …

[HTML][HTML] Multi-objective optimization of organic Rankine cycle systems considering their dynamic performance

R Pili, SB Jørgensen, F Haglind - Energy, 2022 - Elsevier
Abstract The Organic Rankine cycle system is a well-established technology for converting
the waste heat from internal combustion engines into mechanical or electrical power. For a …

Deep reinforcement learning-PID based supervisor control method for indirect-contact heat transfer processes in energy systems

X Wang, J Cai, R Wang, G Shu, H Tian, M Wang… - … Applications of Artificial …, 2023 - Elsevier
Indirect-contact heat exchangers have been widely used in various energy systems, and the
precise tracking control of important heat transfer parameters, such as temperature, is vital …

Surrogate empowered Sim2Real transfer of deep reinforcement learning for ORC superheat control

R Lin, Y Luo, X Wu, J Chen, B Huang, H Su, L **e - Applied Energy, 2024 - Elsevier
Abstract The Organic Rankine Cycle (ORC) is widely used in industrial waste heat recovery
due to its simple structure and easy maintenance. However, in the context of smart …

Data-Driven model identification and efficient MPC via quasi-linear parameter varying representation for ORC waste heat recovery system

Y Shi, Z Zhang, X Chen, L **e, X Liu, H Su - Energy, 2023 - Elsevier
Abstract Organic Rankine Cycle (ORC) stands out in low-grade waste heat recovery (WHR)
technology for its significant performance. Considering the system's coupling dynamics …

Model based control of the inlet pressure of a sliding vane rotary expander operating in an ORC-based power unit

F Fatigati, M Di Bartolomeo, D Di Battista… - Applied Thermal …, 2021 - Elsevier
Sliding vane rotary expanders (SVREs) are widely used in organic Rankine cycle (ORC)-
based power units for low-grade heat recovery because of their capability to deal with …

The dynamic behaviour of ORC-based power units fed by exhaust gases of internal combustion engines in mobile applications

F Fatigati, A Coletta, M Di Bartolomeo… - Applied Thermal …, 2024 - Elsevier
Abstract Exhaust gases Waste Heat Recovery (WHR) in Internal Combustion Engines (ICEs)
performed through ORC-based Power Units (ORC-bPU) ensures a reduction of fuel …

Improving the control performance of an organic rankine cycle system for waste heat recovery from a heavy-duty diesel engine using a model-based approach

J Peralez, P Tona, O Lepreux… - … IEEE conference on …, 2013 - ieeexplore.ieee.org
In recent years, waste heat recovery (WHR) systems based on Rankine cycles have been
the focus of intensive research for transport applications, as they seem to offer considerable …