1 |
Reaction of fleroxacin with chlorine and chlorine dioxide in drinking water distribution systems: Kinetics, transformation mechanisms and toxicity evaluations He GL, Zhang TQ, Zheng FF, Li C, Zhang QZ, Dong FL, Huang Y Chemical Engineering Journal, 374, 1191, 2019 |
2 |
CVaR risk-based optimization framework for renewable energy management in distribution systems with DGs and EVs Wu JK, Wu ZJ, Wu F, Tang HL, Mao XM Energy, 143, 323, 2018 |
3 |
A medium-term analysis of the reduction in technical losses on distribution systems with variable demand using artificial neural networks: An Electrical Energy Storage approach Monteiro RVA, Guimardes GC, Silva FB, Teixeira RFD, Carvalho BC, Finazzi AD, de Vasconcellos AB Energy, 164, 1216, 2018 |
4 |
Cost assessment and evaluation of various hydrogen delivery scenarios Demir ME, Dincer I International Journal of Hydrogen Energy, 43(22), 10420, 2018 |
5 |
Taguchi's method for probabilistic three-phase power flow of unbalanced distribution systems with correlated Wind and Photovoltaic Generation Systems Carpinelli G, Rizzo R, Caramia P, Varilone P Renewable Energy, 117, 227, 2018 |
6 |
An ignored and potential source of taste and odor (T&O) issues-biofilms in drinking water distribution system (DWDS) Zhou XY, Zhang KJ, Zhang TQ, Li C, Mao XW Applied Microbiology and Biotechnology, 101(9), 3537, 2017 |
7 |
Sensitivity analysis of heat losses in collective heat distribution systems using an improved method of EPBD calculations Rebollar JEV, Himpe E, Laverge J, Janssens A Energy, 140, 850, 2017 |
8 |
Optimal operation of active distribution systems based on microgrid structure Haddadian H, Noroozian R Renewable Energy, 104, 197, 2017 |
9 |
Assessing the benefits of residential demand response in a real time distribution energy market Siano P, Sarno D Applied Energy, 161, 533, 2016 |
10 |
Demonstrating demand response from water distribution system through pump scheduling Menke R, Abraham E, Parpas P, Stoianov I Applied Energy, 170, 377, 2016 |