1 |
Integrating industrial waste heat recovery into sustainable smart energy systems Simeoni P, Ciotti G, Cottes M, Meneghetti A Energy, 175, 941, 2019 |
2 |
Coupling waste heat extraction by phase change materials with superheated steam generation in the steel industry Dal Magro F, Savino S, Meneghetti A, Nardin G Energy, 137, 1107, 2017 |
3 |
A novel methodology for the design of waste heat recovery network in eco-industrial park using techno-economic analysis and multi-objective optimization Zhang C, Zhou L, Chhabra P, Garud SS, Aditya K, Romagnoli A, Comodi G, Dal Magro F, Meneghetti A, Kraft M Applied Energy, 184, 88, 2016 |
4 |
Enhancing energy recovery in the steel industry: Matching continuous charge with off-gas variability smoothing Dal Magro F, Meneghetti A, Nardin G, Savino S Energy Conversion and Management, 104, 78, 2015 |
5 |
PCM-based energy recovery from electric arc furnaces Nardin G, Meneghetti A, Dal Magro F, Benedetti N Applied Energy, 136, 947, 2014 |
6 |
From hospital to municipal cogeneration systems: An Italian case study Chinese D, Meneghetti A, Nardin G, Simeoni P International Journal of Energy Research, 31(9), 829, 2007 |
7 |
Optimisation models for decision support in the development of biomass-based industrial district-heating networks in Italy Chinese D, Meneghetti A Applied Energy, 82(3), 228, 2005 |
8 |
Waste-to-energy based greenhouse heating: exploring viability conditions through optimisation models Chinese D, Meneghetti A, Nardin G Renewable Energy, 30(10), 1573, 2005 |
9 |
Diffused introduction of Organic Rankine Cycle for biomass-based power generation in an industrial district: a systems analysis Chinese D, Meneghetti A, Nardin G International Journal of Energy Research, 28(11), 1003, 2004 |
10 |
Waste-to-energy application in an industrial district Meneghetti A, Nardin G, Simeoni P Applied Energy, 72(1), 443, 2002 |