Study region: Kathmandu Valley, Capital city of Nepal.
Study focus: This study applied three hydrological models (i.e., SWAT, HBV, and BTOPMC) to analyze the water balance components and their temporal and seasonal variations in the Kathmandu Valley, Nepal. The water balance components were inves...
Thapa, B.R.
,
Ishidaira, H.
,
Pandey, Vishnu Prasad
,
Shakya, N.M.
,
[A multi-model approach for analyzing water balance dynamics in Kathmandu Valley, Nepal]
,
A multi-model approach for analyzing water balance dynamics in Kathmandu Valley, Nepal
This study is the first to assess land subsidence in the Kathmandu Valley, Nepal. Land subsidence simulations were based on a fully calibrated groundwater (GW) flow model developed using a coupled surface–subsurface modelling system. Subsidence is predicted to occur as a result of deep aquifer co...
Shrestha, P.K.
,
Shakya, N.M.
,
Birkinshaw, S.J.
,
Shrestha, S.
,
[Model-based estimation of land subsidence in Kathmandu Valley, Nepal]
,
Model-based estimation of land subsidence in Kathmandu Valley, Nepal
This study is the first to assess land subsidence in the Kathmandu Valley, Nepal. Land subsidence simulations were based on a fully calibrated groundwater (GW) flow model developed using a coupled surface–subsurface modelling system. Subsidence is predicted to occur as a result of deep aquifer co...
Shrestha, P.K.
,
Shakya, N.M.
,
Pandey, Vishnu Prasad
,
Birkinshaw, S.J.
,
Shrestha, S.
,
[Model-based estimation of land subsidence in Kathmandu Valley, Nepal]
,
Model-based estimation of land subsidence in Kathmandu Valley, Nepal