Arid
DOI10.1111/wej.12243
Surface runoff estimation over heterogeneous foothills of Aravalli mountain using medium resolution remote sensing rainfall data with soil conservation system-curve number method: A case of semi-arid ungauged Manesar Nala watershed
Rawat, Kishan Singh1,2; Mishra, Anil Kumar1; Ahmad, Nayan3
通讯作者Rawat, Kishan Singh
来源期刊WATER AND ENVIRONMENT JOURNAL
ISSN1747-6585
EISSN1747-6593
出版年2017
卷号31期号:2页码:262-276
英文摘要

Manesar Nala watershed, having an aerial extent of 71.53 km(2), was subjected to modelling of its hydrological behaviour for assessing its water resource potential. Modern tools and techniques of Remote Sensing (RS) and Geographic Information System (GIS) were used for assessment of runoff generating potential using the Hydrologic Soil Cover Complex (HSCC) Method [U.S. Department of Agriculture (USDA)-Soil Conservation System-Curve Number (SCS-CN) approach]. RS and GIS were used in generation and integration of thematic maps [such as Land use/Land cover (using LISS-III data) and Hydrologic Soil Group (HSG), (using soil map of study area) to derive the Curve Number (CN) for simulating Runoff (R-o)]. The daily rainfall (P) data for the study period 2002-2015 were acquired from NOAA Climate Prediction Center (NCPC). Corresponding R-o from the watershed for intense storm events for 14 years were calculated through RS and GIS. GIS and SCS-CN model was employed for modelling the runoff production to study its hydrological behaviour. The study showed that the Manesar Nala watershed was having a composite Curve Number - II (CNII) value of 82.5 for normal conditions. For dry and wet conditions these values were estimated at 66.44 (CNI) and 91.56 (CNIII), respectively. This investigation showed that Manesar Nala watershed exhibited an annual average (of 14 years, 2002-2015) R-o volume of 4 542 514.37 m(3) based on the average annual rainfall (P) of 0.72 m (720 mm). The average annual surface runoff (R-o) was predicted to be approximately 0.21 m with annual runoff coefficient (C-R) of 0.29. During the study, we also found a strong correlation ’r’ between satellite driven P and R-o from NRCS-CN method of the order of 0.94. The methodology so developed has the potential to be used in other similar ungauged watersheds in the same agro-climatic conditions for the purpose of planning of watershed conservation measures and other developmental activities.


英文关键词Gurgram hydrology model rainfall runoff SCS-curve number ungauged watershed
类型Article
语种英语
国家India
收录类别SCI-E
WOS记录号WOS:000401235100015
WOS关键词MODEL
WOS类目Environmental Sciences ; Limnology ; Water Resources
WOS研究方向Environmental Sciences & Ecology ; Marine & Freshwater Biology ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/202859
作者单位1.Indian Agr Res Inst, Water Technol Ctr, Delhi, India;
2.Sathyabama Univ, Ctr Remote Sensing & Geoinformat, Madras, Tamil Nadu, India;
3.Indian Agr Res Inst, Div Soil Sci & Chem, Delhi, India
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Rawat, Kishan Singh,Mishra, Anil Kumar,Ahmad, Nayan. Surface runoff estimation over heterogeneous foothills of Aravalli mountain using medium resolution remote sensing rainfall data with soil conservation system-curve number method: A case of semi-arid ungauged Manesar Nala watershed[J],2017,31(2):262-276.
APA Rawat, Kishan Singh,Mishra, Anil Kumar,&Ahmad, Nayan.(2017).Surface runoff estimation over heterogeneous foothills of Aravalli mountain using medium resolution remote sensing rainfall data with soil conservation system-curve number method: A case of semi-arid ungauged Manesar Nala watershed.WATER AND ENVIRONMENT JOURNAL,31(2),262-276.
MLA Rawat, Kishan Singh,et al."Surface runoff estimation over heterogeneous foothills of Aravalli mountain using medium resolution remote sensing rainfall data with soil conservation system-curve number method: A case of semi-arid ungauged Manesar Nala watershed".WATER AND ENVIRONMENT JOURNAL 31.2(2017):262-276.
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