Skip to main content
Erschienen in: Water Resources Management 1/2019

22.09.2018

Romanian River Basins Lag Time Analysis. The SCS-CN Versus RNS Comparative Approach Developed for Small Watersheds

verfasst von: Mihai Voda, Constantin Adrian Sarpe, Anna Izabella Voda

Erschienen in: Water Resources Management | Ausgabe 1/2019

Einloggen

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Romanian policy makers have to perceive that human intervention on river basins land cover is influencing rainfall-runoff relation and the used methodology cannot accurately estimate watershed surface flow transformations. Global water cycles and energy fluxes understanding is leading to better predictions of land atmosphere interaction and local hydro-climates evolution. The water transfer time determination from rainfall to runoff needs accurate measurements of river basins hydrological parameters. Here, we analyzed and compared the lag time value results of two different methodologies (curve number and rational methodology) used for 54 Romanian small catchment areas study. The focus of this paper is the lag time evaluation and interpretation for an effective implementation of the best methodology approach in the Romanian geographical space. Our research in small river basins was developed using remote sensing technology maps, GIS and environmental datasets in combination with field work on every drainage basin in order to assess the specific morphological features and validate the land cover typology. We found that Soil Conservation Service - Curve Number (SCS-CN) method is widely used according to USA landscape features classification, but not necessarily applicable to Romanian river basins characteristics. Our results show how the official Romanian rational methodology national standard (RNS) can be improved and the limits of SCS-CN method.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Birsan M-V et al (2012) Recent trends in streamflow in Romania (1976-2005). Romanian Rep Phys 64(1):275–280 Birsan M-V et al (2012) Recent trends in streamflow in Romania (1976-2005). Romanian Rep Phys 64(1):275–280
Zurück zum Zitat Bozzano F, Mazzanti P, Perissin D, Rocca A, De Pari P, Discenza ME (2017) Basin scale assessment of landslides geomorphological setting by advanced InSAR analysis. Remote Sens 9:267CrossRef Bozzano F, Mazzanti P, Perissin D, Rocca A, De Pari P, Discenza ME (2017) Basin scale assessment of landslides geomorphological setting by advanced InSAR analysis. Remote Sens 9:267CrossRef
Zurück zum Zitat Chendes V et al (2014) Aspecte metodologice privind realizarea hartilor de risc la inundatii raportate in cadrul Directivei 2007/60/EC. Hidrotehnica 59:10–11 Chendes V et al (2014) Aspecte metodologice privind realizarea hartilor de risc la inundatii raportate in cadrul Directivei 2007/60/EC. Hidrotehnica 59:10–11
Zurück zum Zitat Choi HI (2013) Application of a land surface model using remote sensing data for high resolution simulations of terrestrial processes. Remote Sens 5:6838–6856CrossRef Choi HI (2013) Application of a land surface model using remote sensing data for high resolution simulations of terrestrial processes. Remote Sens 5:6838–6856CrossRef
Zurück zum Zitat Deitch MJ, Docto M, Feirer ST (2016) A spatially explicit framework for assessing the effects of weather and water rights on streamflow. Appl Geogr 67:14–26CrossRef Deitch MJ, Docto M, Feirer ST (2016) A spatially explicit framework for assessing the effects of weather and water rights on streamflow. Appl Geogr 67:14–26CrossRef
Zurück zum Zitat Diaconu C, Miță P (1997) Instrucțiuni pentru calculul scurgerii maxime în bazine mici. I.N.M.H, București Diaconu C, Miță P (1997) Instrucțiuni pentru calculul scurgerii maxime în bazine mici. I.N.M.H, București
Zurück zum Zitat Diaconu C, Serban P (1994) Sinteze si regionalizari hidrologice. Editura HGA, Bucuresti, pp 151–185. 973-98530-8-0 Diaconu C, Serban P (1994) Sinteze si regionalizari hidrologice. Editura HGA, Bucuresti, pp 151–185. 973-98530-8-0
Zurück zum Zitat Eilander D, Annor FO, Iannini L, van de Giesen N (2014) Remotely sensed monitoring of small reservoir dynamics: a Bayesian approach. Remote Sens 6:1191–1210CrossRef Eilander D, Annor FO, Iannini L, van de Giesen N (2014) Remotely sensed monitoring of small reservoir dynamics: a Bayesian approach. Remote Sens 6:1191–1210CrossRef
Zurück zum Zitat Fan F, Deng Y, Hu X, Weng Q (2013) Estimating composite curve number using an improved SCS-CN method with remotely sensed variables in Guangzhou. China Remote Sens 5:1425–1438CrossRef Fan F, Deng Y, Hu X, Weng Q (2013) Estimating composite curve number using an improved SCS-CN method with remotely sensed variables in Guangzhou. China Remote Sens 5:1425–1438CrossRef
Zurück zum Zitat FAO/IIASA/ISRIC/ISS-CAS/JRC (2009) Harmonized world soil database (version 1.1). FAO, Rome, Italy and IIASA, Laxembourg, Austria FAO/IIASA/ISRIC/ISS-CAS/JRC (2009) Harmonized world soil database (version 1.1). FAO, Rome, Italy and IIASA, Laxembourg, Austria
Zurück zum Zitat Grimaldi S, Petroselli A (2015) Do we still need the rational formula? An alternative empirical procedure for peak discharge estimation in small and ungauged basins. Hydrol Sci J 60(1):1–11CrossRef Grimaldi S, Petroselli A (2015) Do we still need the rational formula? An alternative empirical procedure for peak discharge estimation in small and ungauged basins. Hydrol Sci J 60(1):1–11CrossRef
Zurück zum Zitat Grimaldi S, Petroselli A, Tauro F, Porfiri M (2012) Time of concentration: a paradox in modern hydrology. Hydrol Sci J 57(2):217–228CrossRef Grimaldi S, Petroselli A, Tauro F, Porfiri M (2012) Time of concentration: a paradox in modern hydrology. Hydrol Sci J 57(2):217–228CrossRef
Zurück zum Zitat Grimaldi S, Petroselli A, Romano N (2013) Green-Ampt curve number mixed procedure as an empirical tool for rainfall-runoff modelling in small and ungauged basins. Hydrol Process 27:1253–1264CrossRef Grimaldi S, Petroselli A, Romano N (2013) Green-Ampt curve number mixed procedure as an empirical tool for rainfall-runoff modelling in small and ungauged basins. Hydrol Process 27:1253–1264CrossRef
Zurück zum Zitat Győri M-M, Haidu I, Humbert J (2016) Deriving the floodplain in rural areas for high exceedance probability having limited data source. Environ Eng Manag J 15(8):1879–1887CrossRef Győri M-M, Haidu I, Humbert J (2016) Deriving the floodplain in rural areas for high exceedance probability having limited data source. Environ Eng Manag J 15(8):1879–1887CrossRef
Zurück zum Zitat Haidu I, Batelaan O, Crăciun AI, Domniţa M (2017) GIS module for the estimation of the hillslope torrential peak flow. Environ Eng Manag J 16(5):1137–1144CrossRef Haidu I, Batelaan O, Crăciun AI, Domniţa M (2017) GIS module for the estimation of the hillslope torrential peak flow. Environ Eng Manag J 16(5):1137–1144CrossRef
Zurück zum Zitat Huang M, Gallichand J, Wang Z, Goulet M (2006) A modification to the soil conservation service curve number method for steep slopes in the loess plateau of China. Hydrol Process 20:579–589CrossRef Huang M, Gallichand J, Wang Z, Goulet M (2006) A modification to the soil conservation service curve number method for steep slopes in the loess plateau of China. Hydrol Process 20:579–589CrossRef
Zurück zum Zitat Hunink JE, Eekhout JPC, Vente JD, Contreras S, Droogers P, Baille A (2017) Hydrological modelling using satellite-based crop coefficients: a comparison of methods at the basin scale. Remote Sens 9:174CrossRef Hunink JE, Eekhout JPC, Vente JD, Contreras S, Droogers P, Baille A (2017) Hydrological modelling using satellite-based crop coefficients: a comparison of methods at the basin scale. Remote Sens 9:174CrossRef
Zurück zum Zitat Jeon J-H, Lim KJ, Engel BA (2014) Regional calibration of SCS-CN L-THIA model: application for ungauged basins. Water 6:1339–1359CrossRef Jeon J-H, Lim KJ, Engel BA (2014) Regional calibration of SCS-CN L-THIA model: application for ungauged basins. Water 6:1339–1359CrossRef
Zurück zum Zitat Kim U, Kaluarachchi JJ (2008) Application of parameter estimation and regionalization methodologies to ungauged basins of the upper Blue Nile River basin. Ethiopia J Hydrol 362:39–56CrossRef Kim U, Kaluarachchi JJ (2008) Application of parameter estimation and regionalization methodologies to ungauged basins of the upper Blue Nile River basin. Ethiopia J Hydrol 362:39–56CrossRef
Zurück zum Zitat Kowalik T, Walega A (2015) Estimation of CN parameter for small agricultural watersheds using asymptotic functions. Water 7:939–955CrossRef Kowalik T, Walega A (2015) Estimation of CN parameter for small agricultural watersheds using asymptotic functions. Water 7:939–955CrossRef
Zurück zum Zitat Miţă P (2017) The runoff coefficient. Bucuresti, Romania, 204 p. ISBN 978-973-0-23486-2 Miţă P (2017) The runoff coefficient. Bucuresti, Romania, 204 p. ISBN 978-973-0-23486-2
Zurück zum Zitat Miţă P, Muscanu M (1986) Small river basins runoff coefficients. Studii şi cercetări de hidrologie, Bucuresti, pp 45–58. 53 Miţă P, Muscanu M (1986) Small river basins runoff coefficients. Studii şi cercetări de hidrologie, Bucuresti, pp 45–58. 53
Zurück zum Zitat Mustață I (1991) Instrucțiuni pentru calculul scurgerii maxime în bazine mici. I.N.M.H, București Mustață I (1991) Instrucțiuni pentru calculul scurgerii maxime în bazine mici. I.N.M.H, București
Zurück zum Zitat Musy A (1998) Hydrologie appliquée. H*G*A*, Bucuresti. 368 p Musy A (1998) Hydrologie appliquée. H*G*A*, Bucuresti. 368 p
Zurück zum Zitat Paudel GS, Thapa GB (2004) Impact of social, institutional and ecological factors on land management practices in mountain watersheds of Nepal. Appl Geogr 24(1):35–55CrossRef Paudel GS, Thapa GB (2004) Impact of social, institutional and ecological factors on land management practices in mountain watersheds of Nepal. Appl Geogr 24(1):35–55CrossRef
Zurück zum Zitat Posner A, Georgakakos K, Shamir E (2014) MODIS inundation estimate assimilation into soil moisture accounting hydrologic model: a case study in Southeast Asia. Remote Sens 6:10835–10859CrossRef Posner A, Georgakakos K, Shamir E (2014) MODIS inundation estimate assimilation into soil moisture accounting hydrologic model: a case study in Southeast Asia. Remote Sens 6:10835–10859CrossRef
Zurück zum Zitat Reistetter JA, Russell M (2011) High-resolution land cover datasets, composite curve numbers, and storm water retention in the Tampa Bay, FL region. Appl Geogr 31:740–747CrossRef Reistetter JA, Russell M (2011) High-resolution land cover datasets, composite curve numbers, and storm water retention in the Tampa Bay, FL region. Appl Geogr 31:740–747CrossRef
Zurück zum Zitat Sarpe CA, Haidu I (2017) Temporal sampling conditions in numerical integration of hydrological systems time series. Geogr Tech 12(1):82–94 Sarpe CA, Haidu I (2017) Temporal sampling conditions in numerical integration of hydrological systems time series. Geogr Tech 12(1):82–94
Zurück zum Zitat Sarpe CA, Voda AI (2017) Small watershed hydrological models - lag time comparation. In: Horvath C, Croitoru AE, Guettler I, Man TC, Bartok B (eds) 3rd PannEx workshop on the climate system of the Pannonian basin. Cluj-Napoca, 20-21 March 2017, Romania Sarpe CA, Voda AI (2017) Small watershed hydrological models - lag time comparation. In: Horvath C, Croitoru AE, Guettler I, Man TC, Bartok B (eds) 3rd PannEx workshop on the climate system of the Pannonian basin. Cluj-Napoca, 20-21 March 2017, Romania
Zurück zum Zitat USDA-SCS (2004) United States Department of Agriculture, Soil Conservation Service estimation of direct runoff from storm rainfall. In: National Engineering Handbook, Washington, DC USDA-SCS (2004) United States Department of Agriculture, Soil Conservation Service estimation of direct runoff from storm rainfall. In: National Engineering Handbook, Washington, DC
Zurück zum Zitat Voda M, Sorocovschi V, Ratiu RF (2010) Global Warming, cap. Water Management Works in Tarnave River Basin, Romania, 685 p. Springer Voda M, Sorocovschi V, Ratiu RF (2010) Global Warming, cap. Water Management Works in Tarnave River Basin, Romania, 685 p. Springer
Zurück zum Zitat Voda AI, Sarpe CA, Voda M (2018) Methods of maximum discharge computation in ungauged river basins. Review of procedures in Romania. Geogr Tech 13(1):130–137 Voda AI, Sarpe CA, Voda M (2018) Methods of maximum discharge computation in ungauged river basins. Review of procedures in Romania. Geogr Tech 13(1):130–137
Zurück zum Zitat Xu J, Zhao Y, Zhong K, Ruan H, Liu X (2016) Coupling modified linear spectral mixture analysis and soil conservation service curve number (SCS-CN) models to simulate surface runoff: application to the main urban area of Guangzhou, China. Water 8:550CrossRef Xu J, Zhao Y, Zhong K, Ruan H, Liu X (2016) Coupling modified linear spectral mixture analysis and soil conservation service curve number (SCS-CN) models to simulate surface runoff: application to the main urban area of Guangzhou, China. Water 8:550CrossRef
Zurück zum Zitat Young DF, Carleton JN (2006) Implementation of a probabilistic curve number method in the PRZM runoff model. Environ Model Softw 21:1172–1179CrossRef Young DF, Carleton JN (2006) Implementation of a probabilistic curve number method in the PRZM runoff model. Environ Model Softw 21:1172–1179CrossRef
Zurück zum Zitat Yu B, Rose WC, Ciesiolka CA, Cakurs U (2000) The relationship between runoff rate and lag time and the effects of surface treatments at the plot scale. Hydrol Sci J 45(5):709–726CrossRef Yu B, Rose WC, Ciesiolka CA, Cakurs U (2000) The relationship between runoff rate and lag time and the effects of surface treatments at the plot scale. Hydrol Sci J 45(5):709–726CrossRef
Zurück zum Zitat Zégre NP, Maxwell A, Lamont S (2013) Characterizing streamflow response of a mountaintop-mined watershed to changing land use. Appl Geogr 39:5–15CrossRef Zégre NP, Maxwell A, Lamont S (2013) Characterizing streamflow response of a mountaintop-mined watershed to changing land use. Appl Geogr 39:5–15CrossRef
Metadaten
Titel
Romanian River Basins Lag Time Analysis. The SCS-CN Versus RNS Comparative Approach Developed for Small Watersheds
verfasst von
Mihai Voda
Constantin Adrian Sarpe
Anna Izabella Voda
Publikationsdatum
22.09.2018
Verlag
Springer Netherlands
Erschienen in
Water Resources Management / Ausgabe 1/2019
Print ISSN: 0920-4741
Elektronische ISSN: 1573-1650
DOI
https://doi.org/10.1007/s11269-018-2100-8

Weitere Artikel der Ausgabe 1/2019

Water Resources Management 1/2019 Zur Ausgabe