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2018
1 Fu, Chao; Vikse, Matias; Gundersen, Truls.
Work and heat integration: An emerging research area. Energy 2018 ;Volum 158. s. 796-806
NTNU ENERGISINT Untitled
 
2 Gundersen, Truls.
Education & Training in FME HighEFF.
NTNU Untitled
 
3 Gundersen, Truls.
Work and Heat Exchange Networks (WHENs). HighEFF Annual Consortium Meeting 2018; 2018-05-02 - 2018-05-03
NTNU Untitled
 
4 Hamedi, Homa; Karimi, Iftekhar A; Gundersen, Truls.
Optimal cryogenic processes for nitrogen rejection from natural gas. Computers and Chemical Engineering 2018 ;Volum 112. s. 101-111
NTNU Untitled
 
5 Khor, JO; Dal Magro, F; Gundersen, Truls; Sze, JY; Romagnoli, Alessandra.
Recovery of cold energy from liquefied natural gas regasification: Applications beyond power cycles. Energy Conversion and Management 2018 ;Volum 174. s. 336-355
NTNU Untitled
 
6 Kim, Donghoi; Giametta, Roxane Edith Helene; Gundersen, Truls.
Optimal Use of Liquefied Natural Gas (LNG) Cold Energy in Air Separation Units. Industrial & Engineering Chemistry Research 2018 ;Volum 57.(17) s. 5914-5923
NTNU Untitled
 
7 Kim, Donghoi; Gundersen, Truls.
Comparison of Liquefaction Processes for FLNG. ISOPE - International Offshore and Polar Engineering Conference. Proceedings 2018 ;Volum 2018-June. s. 1106-1111
NTNU Untitled
 
8 Kim, Donghoi; Gundersen, Truls.
Development and use of exergy efficiency for complex cryogenic processes. Energy Conversion and Management 2018 ;Volum 171. s. 890-902
NTNU Untitled
 
9 Rammohan Subramanian, Avinash Shankar; Anantharaman, Rahul; Gundersen, Truls.
Conceptual design of an efficient Hydrogen production process from Natural Gas using an extension to the “G-H” methodology. Computer-aided chemical engineering 2018 ;Volum 44. s. 379-384
NTNU ENERGISINT Untitled
 
10 Rammohan Subramanian, Avinash Shankar; Gundersen, Truls; Adams, Thomas Alan.
Modeling and simulation of energy systems: A review. Processes 2018 ;Volum 6:238.(12) s. 1-45
NTNU Untitled
 
11 Vikse, Matias; Watson, Harry A.J.; Barton, Paul I.; Gundersen, Truls.
Simulation of a Dual Mixed Refrigerant Process using i Nonsmooth Framework. Computer-aided chemical engineering 2018 ;Volum 44. s. 391-396
NTNU Untitled
 
12 Vikse, Matias; Watson, Harry AJ; Gundersen, Truls; Barton, Paul I.
Versatile Simulation Method for Complex Single Mixed Refrigerant Natural Gas Liquefaction Processes. Industrial & Engineering Chemistry Research 2018 ;Volum 57.(17) s. 5881-5894
NTNU Untitled
 
13 Vikse, Matias; Watson, Harry AJ; Gundersen, Truls; Barton, Paul I..
Simulation of dual mixed refrigerant natural gas liquefaction processes using a nonsmooth framework. Processes 2018 ;Volum 6.(10)
NTNU Untitled
 
14 Watson, Harry AJ; Vikse, Matias; Gundersen, Truls; Barton, Paul I.
Optimization of single mixed-refrigerant natural gas liquefaction processes described by nondifferentiable models. Energy 2018 ;Volum 150. s. 860-876
NTNU Untitled
 
15 Yu, Haoshui; Eason, John; Biegler, Lorenz T; Feng, Xiao; Gundersen, Truls.
Process optimization and working fluid mixture design for organic Rankine cycles (ORCs) recovering compression heat in oxy-combustion power plants. Energy Conversion and Management 2018 ;Volum 175. s. 132-141
NTNU Untitled
 
16 Yu, Haoshui; Fu, Chao; Gundersen, Truls.
Work and Heat Exchange Networks – Opportunities and Challenges. Computer-aided chemical engineering 2018 ;Volum 44. s. 481-486
NTNU ENERGISINT Untitled
 
17 Yu, Haoshui; Fu, Chao; Vikse, Matias; Gundersen, Truls.
Work and heat integration—A new field in process synthesis and process systems engineering. AIChE Journal 2018 s. 1-16
NTNU ENERGISINT Untitled
 
18 Yu, Haoshui; Fu, Chao; Vikse, Matias; He, Chang; Gundersen, Truls.
Identifying optimal thermodynamic paths in work and heat exchange network synthesis. AIChE Journal 2018 ;Volum 65.(2) s. 549-561
ENERGISINT NTNU Untitled
 
19 Yu, Haoshui; Gundersen, Truls; Feng, Xiao.
Process integration of organic Rankine cycle (ORC) and heat pump for low temperature waste heat recovery. Energy 2018 ;Volum 160. s. 330-340
NTNU Untitled
 
20 Yu, Haoshui; Vikse, Matias; Gundersen, Truls.
Comparison of reformulations of the Duran-Grossmann model for Work and Heat Exchange Network (WHEN) synthesis. Computer-aided chemical engineering 2018 ;Volum 43. s. 489-494
NTNU Untitled