Regulators' setup with application to the Roma–Cecchignola combined sewer system
Tài liệu tham khảo
Almeida, M. (1994). Real time control in small urban drainage systems. Report 256/94, Lab. Nac. de Eng. Civil (LNEC). Lisboa, Portugal
Andersen, N., Harremoës, P., & Sørensen, S. (1996). Monitoring and real time control in a trunk sewer. In F. Sieker, H.R. Verworn (Eds.), Proceedings of seventh international conference on urban storm drainage (pp. 923–928). Hannover, Germany
Broks, 1995, The potential of real time control to reduce combined sewer overflow, Nordic Hydrology, 26, 223, 10.2166/nh.1995.0013
Calenda, G., Campisano, A., & Modica, C., (2000). Un modello numerico per il Controllo in tempo reale nelle reti di fognatura. In CSDU (Ed.), Atti del Seminario su Risorse idriche ed impatto ambientale del drenaggio urbani. Cagliari, Italy (pp. 169–186)
Döring, R., Green, M.J., Hartong, H.J.G., Jacquet, G., Kido, Y., Petersen, S.O., & Schilling, W. (1989). Real time control of urban drainage systems. In W. Schilling (Ed.), The state of the art. IAWPRC Scientific and Technical Report No. 2. London: Pergamon
Garcia-Navarro, 1992, McCormack's method for the numerical simulation of one-dimensional discontinuous unsteady open channel flow, Journal of Hydraulic Research, ASCE, 30, 95, 10.1080/00221689209498949
Garcia-Navarro, 1992, 1-D open-channel flow simulation using TVD-mccormack scheme, Journal of Hydraulic Engineering ASCE, 118, 1359, 10.1061/(ASCE)0733-9429(1992)118:10(1359)
Gatke, D., & Schilling, W. (1990). Hydrodynamic behaviour of drainage systems under real time control. In Y. Iwasa, & T. Sueishi (Eds.), Proceedings of the fifth international conference on urban storm drainage (pp. 1219–1224). Suita, Osaka, Japan
Gatke, D. (1991). Controlling the combined sewer system of the city of Bremen, right side of the Weser river. In H. Hartong, & A. Lobbrecht, (Eds), Proceedings of the third European junior scientist course applications of operations research to RTC of water resources systems (pp. 5–16). Formerum, Netherlands
Gonwa, W.S., & Novotny, V. (1993). Efficient real time control and operation of interconnected wastewater collection system. Report Dep. Civil Env. Eng., Marquette University, Milwaukee, WI
Huber, 1988
Jørgensen, M., Schilling, & W., Harremoës, P. (1995). General assessment of potential CSO reduction by means of real time control. In Proceedings of the second international conference NOVATECH. Lyon, France
Marsalek, J., & Schilling, W. (1998). Operation of sewer systems. In: J. Marsalek, et al. (Eds), Hydroinformatics tools for planning, design, operation and rehabilitation of sewer systems, NATO ASI series 2: Environment (Vol. 44). Dordrecht: Kluwer
Paoletti, A., Sanfilippo, U., & Valsecchi, C. (1998). Controllo in tempo reale delle reti di drenaggio urbano per la riduzione degli scarichi meteorici. In CUECM (Ed.), Proceedings of XXVI convegno di idraulica e costruzioni idrauliche (Vol. 4; pp. 215–228). Catania, Italy
Schilling, W. (1996). Potential and limitations of real time control. In F. Sieker, H.R. Verworn (Eds.), Proceedings of seventh international conference on urban storm drainage (pp. 803–808). Hannover, Germany
Schilling, 1996, Real time control of wastewater systems, Journal of Hydraulic Research ASCE, 34, 785, 10.1080/00221689609498450
Schmitt, T.G. (1996). Operational flow control of combined sewer systems in long term pollution load simulation. In F. Sieker, H.R. Verworn (Eds.), Proceedings of seventh international conference on urban storm drainage (827–832). Hannover, Germany
Weyand, M., & Dohmann, M. (1990). Experience and results of real time control within a combined sewer system. In: Iwasa, Y., Sueishi, T. (Eds), Proceedings of the fifth international conference on urban storm drainage (pp. 1237–1242). Suita, Osaka, Japan