References
- N. Hadadin, K. Shatanawi, R. Al-Weshah, Rainwater harvesting
in Jordan: a case of Royal Pavilion at Amman Airport, Desal.
Water Treat., 52 (2014) 6058–6068.
- A. Ghaffarian Hoseini, J. Tookey, A. Ghaffarian Hoseini,
S.M. Yusoff, N.B. Hassan, State of the art of rainwater harvesting
systems towards promoting green built environments: a
review, Desal. Water Treat., 57 (2016) 95–104.
- S.N. Rahmat, A.A.S. Al‑Gheethi, S. Ayob, F.M. Shahli,
Development of dual water supply using rooftop rainwater
harvesting and groundwater systems, SN Appl. Sci., 2 (2020)
1–8, 85, doi: 10.1007/s42452-019-1862-9.
- S. Nandargi, O.N. Dhar, Extreme rainfall events over the
Himalayas between 1871 and 2007, Hydrol. Sci. J., 56 (2011)
930–945.
- J. Qiu, The third pole, Nature, 454 (2008) 393–396.
- J.C. Xu, The Highlands: A Shared Water Tower in a Changing
Climate and Changing Asia, Working Paper No. 64, World
Agrofor Cent, Nairobi, Kenya, 2008.
- M. Apollo, The Population of Himalayan Regions by the
Numbers: Past, Present and Future, R. Efe, M. Öztürk,
Eds., Contemporary Studies in Environment and Tourism,
Cambridge Scholars Publishing, 2017, pp. 143–159.
- N. Aayog, Report of Working Group I Inventory and Revival
of Springs in the Himalayas for Water Security, Contributing
to Sustainable Development in Indian Himalayan Region,
NITI AAYOG, Sansad Marg, New Delhi, 2018, 52 p. Available
online at: http://www.niti.gov.in/writereaddata/files/document_
publication/doc1.pdf
- S. Gaglioti, E. Infusino, T. Caloiero, G. Callegari, I. Guagliardi,
Geochemical characterization of spring waters in the Crati
river basin, Calabria (Southern Italy), Geofluids, 2019 (2019)
1–16.
- A. Agarwal, N.K. Bhatnagar, R.K. Nema, N.K. Agrawal, Rainfall
dependence of springs in the Midwestern Himalayan hills of
Uttarakhand, Mountain Res. Dev., 32 (2012) 446–455.
- P.C. Tiwari, B. Joshi, Environmental changes and sustainable
development of water resources in the Himalayan headwaters
of India, Water Resour. Manage., 26 (2012) 883–907.
- A.K. Vashishth, H.C. Sharma, Study on hydrological behavior
of a natural spring, Curr. Sci., 93 (2007) 837–839.
- B. Kumar, Almora’s dying water bodies, Down Earth, (2007)
36–38.
- A.K. Singh, D.S. Rawat, Depletion of oak forests threatening
springs: an exploratory study, Nat. Geogr. J. India, 31 (1985)
44–48.
- K.S. Valdiya, S.K. Bartarya, Diminishing discharges of mountain
springs in a part of Kumaun Himalaya, Curr. Sci., 58 (1989)
417–426.
- R. Babu, J.S. Samra, P.B. Joshi, B.L. Dhyani, R. Singh,
C. Prakash, Water Harvesting Technology and Management
Practices Garhkot Watershed of Tehri Garwal, U.P Hills, India,
M. Banskota, S.R. Chalies, Eds., Waters of Life Perspective
of Water Harvesting in the HinduKush-Himalayas, Vol. 2,
Kathmandu: ICIMOD, Kathmandu, 2000, pp. 97–158.
- S. Rana, V. Gupta, Watershed Management in the Indian
Himalayan Region: Issues and Challenges, World Environmental
and Water Resources Congress, ASCE Publications, 2009.
- G.C.S. Negi, V. Joshi, Drinking water issues and development
of spring sanctuaries in a mountain watershed in Indian
Himalaya, Mountain Res. Dev., 22 (2002) 29–31.
- K.S. Valdiya, S.K. Bartarya, Hydrological studies of springs in
the catchment of the Gaula River, Kumaun Lesser Himalaya,
India, Mountain Res. Dev., 11 (1991) 239–258.
- S. Tambe, G. Kharel, M.L. Arrawatia, H. Kulkarni, K. Mahamuni,
A.K. Ganeriwala, Reviving dying springs: climate change
adaptation experiments from the Sikkim Himalaya, Mountain
Res. Dev., 32 (2012) 62–72.
- Y. Hao, T.J. Yeh, Z. Gao, Y. Wang, Y. Zhao, A gray system model
for studying the response to climatic change: the Liulin karst
spring, China, J. Hydrol., 328 (2006) 668–676.
- Y. Hao, Y. Wang, Y. Zhu, Y. Lin, J. Wen, T.J. Yeh, Response of
karst springs to climate change and anthropogenic activities:
the Niangziguan Springs, China, Prog. Phys. Geogr., 33 (2009)
634–649.
- G.C.S. Negi, V. Joshi, Geo-hydrology of springs in a mountain
watershed: the need for problem solving research, Curr. Sci.,
71 (1996) 772–776.
- G.C.S. Negi, V. Joshi, Rainfall and spring discharge patterns
in two small drainage catchments in the Western Himalayan
Mountains, India, Environmentalist, 24 (2004) 19–28.
- J.S. Rawat, M.S. Rawat, Accelerated erosion and denudation
in the Nana Kosi watershed, central Himalaya, India; Part I:
Sediment Load, Mountain Res. Dev., 14 (1994) 25–38.
- S.C. Panday, A.K. Srivastva, N.S. Murty, J.K. Bisht, J.C. Bhatt,
H.S. Gupta, A. Pattanayak, Climate and Crop Planning for
Mid Hills of Uttarakhand, ICAR-Vivekananda Parvatiya Krishi
anusandhan Sansthan, Almora, Uttarakhand, 2016, 176 p.
- S.C. Panday, K.K.S. Bisht, A.K. Srivastava, H.S. Gupta, Climate
Change in Mid Himalaya, Proceedings of 4th World Congress
on Conservation Agriculture Held During February 4–7, 2009.
- S.C. Panday, R.D. Singh, H.S. Gupta, Analysis of meteorological
drought based on rainfall data of Hawalbagh, Almora,
Indian J. Soil Conserv., 30 (2002) 186–189.
- G.C.S. Negi, V. Joshi, Geo-Hydrological Studies for
Augmentation of Spring Discharge in the Western Himalaya,
Final Technical Report (1 April 2004 – 30 Sept. 2007) Admn.
Appv. No. 23/26/2002-R&D/1108 Ministry of Water Resources,
GOI, New Delhi, 75 p.
- Institute of Hydrology, Low Flow Studies (Report No. 1),
Institute of Hydrology, Crowmarsh Gifford, Wallingford, Oxon,
1980.
- F. Fiorillo, F.M. Guadagno, Karst spring discharges analysis
in relation to drought periods, using the SPI, Water Resour.
Manage., 24 (2010) 1867–1884.
- G. Sappa, F.M. De Filippi, S. Iacurto, G. Grelle, Evaluation
of minimum Karst spring discharge using a simple rainfallinput
model: the Case Study of Capodacqua di Spigno Spring
(Central Italy), Water, 11 (2019) 807, doi: 10.3390/w11040807.
p13.
- T.N. Adji, I.Y. Bahtiar, Rainfall-discharge relationship and Karst
flow components analysis for Karst aquifer characterization in
Petoyan Spring, Java, Indonesia, Environ. Earth Sci., 75 (2016)
735,
doi:10.1007/s12665-016-5553-1
- A.S. Rawat, R. Sah, Traditional knowledge of water management
in Kumaon Himalaya, Indian J. Traditional Knowl., 8 (2009)
249–254.