MIKE SHE Public Data Catalog
Pakistan
Version: 0.1 test template
Purpose: Country-specific public dataset catalog for building simple to advanced MIKE SHE models
Region: Islamic Republic of Pakistan (Indus Basin, Balochistan, northern mountains)
Quick Start
Minimum Public Datasets for Recharge Modelling with MIKE SHE (Pakistan)
If your objective is to calculate distributed groundwater recharge (without simulating groundwater flow or rivers), only five dataset categories are required.
Public national datasets are limited; river flows and groundwater reports come from WAPDA, IRSA and provincial irrigation departments. Global products form the core stack.
| MIKE SHE Input |
Dataset Type |
Recommended Dataset |
Spatial Availability |
Why recommended |
| Topography (DEM) |
Gridded |
Copernicus GLO-30 |
Global |
Accurate 30 m DEM; forest canopy is not a major issue in most of Pakistan. |
| Land Cover |
Gridded |
ESA WorldCover |
Global |
10 m land cover; add canal command areas and cropping seasons separately. |
| Soil Hydraulic Properties |
Gridded |
SoilGrids |
Global |
Pedotransfer functions required; saline and sodic soils need attention. |
| Precipitation |
Gridded |
CHIRPS / APHRODITE
GPM IMERG |
Pakistan |
Complete coverage below mountains; mountain precipitation is highly uncertain. |
|
Time Series |
Pakistan Meteorological Department |
Stations |
By request. |
| Meteorological Forcing / Potential ET |
Gridded |
ERA5-Land |
Global |
Hourly variables for FAO-56 reference ET and snow. |
|
Time Series |
Pakistan Meteorological Department |
Stations |
By request. |
Optional Improvements
Recommended Workflow
- Download Copernicus GLO-30 for the model domain.
- Delineate the model domain and prepare the terrain model.
- Download ESA WorldCover and assign MIKE SHE vegetation classes.
- Download SoilGrids and derive van Genuchten parameters using pedotransfer functions.
- Choose your meteorological forcing:
- Option A (recommended): Use CHIRPS or APHRODITE for rainfall and ERA5-Land for other variables.
- Option B: Use PMD station data.
- Let MIKE SHE calculate evapotranspiration internally using the selected vegetation and soil parameters.
- Add canal seepage and irrigation applications, which dominate recharge in the Indus plains.
- Check simulated actual ET against MODIS MOD16 or SSEBop.
- Export the distributed groundwater recharge for use in MODFLOW, FEFLOW, or other groundwater models.
1. Introduction for advanced data sources
1.1 Purpose
This document summarizes public datasets that can be used to construct a physically based MIKE SHE model for Pakistan.
The catalog is organized according to the typical MIKE SHE model-building workflow. It covers terrain, land cover, meteorological forcing, ET, rivers, soils, hydrogeology, groundwater, water management, and calibration.
1.2 Intended Use
This catalog is intended for:
- Indus Basin groundwater and irrigation studies
- waterlogging and salinity assessments
- snow and glacier melt contributions
- flood studies (e.g. 2022)
- applied MIKE SHE model setup
1.3 General Notes for Pakistan
- Coordinate system: WGS 84 / UTM 41N–43N.
- Water allocation between provinces follows the Water Apportionment Accord (1991); provinces manage irrigation and groundwater.
- Data often come as reports and PDFs rather than portals.
2. Hydrological Characteristics of Pakistan
2.1 Climate
- arid to semi-arid across most of the country
- monsoon rainfall July–September, heaviest in the north-east
- winter precipitation from western disturbances
- annual rainfall from under 100 mm (parts of Balochistan and Sindh) to over 1,500 mm in the northern foothills
- high evaporation
2.2 Topography
- Karakoram, Hindu Kush and Himalaya with large glaciers
- Indus plains of Punjab and Sindh
- Balochistan plateau
- Thar and Cholistan deserts
- Indus Delta
2.3 Major Hydrological Challenges
- dependence on the Indus Basin Irrigation System
- waterlogging and salinity
- groundwater depletion (e.g. Lahore, Quetta)
- saline groundwater upconing
- floods and glacial lake outbursts
- seawater intrusion in the Indus Delta
2.4 Major Aquifer Systems
Important aquifer settings include:
- Indus Basin alluvial aquifer (fresh in Punjab, often saline in Sindh)
- Quetta and other Balochistan valley aquifers
- Peshawar valley
- Potohar plateau
- desert aquifers
3. Recommended Dataset Stack
4. Terrain Model
4.1 Purpose in MIKE SHE
Terrain data are required for model surface elevation, overland-flow gradients, surface storage, catchment delineation, river network verification, and floodplain connectivity.
4.2 Dataset Comparison
| Dataset |
Coverage |
Resolution |
MIKE SHE Suitability |
Advantages |
Limitations |
Recommendation |
| Copernicus GLO-30 |
Global |
30 m |
Primary |
Accurate |
Mountain voids |
★★★★★ |
| AW3D30 |
Global |
30 m |
Comparison |
Independent |
— |
★★★☆☆ |
4.3 Typical Preprocessing
- reproject to UTM 41N–43N
- clip to model domain plus buffer
- condition drainage and check against the river network
- resample to model grid
- smooth only where needed for numerical stability
4.4 Quality Checks
- check canal embankments in flat plains
- check mountain voids
5. Surface Water
5.1 Rivers
| Dataset |
Coverage |
MIKE SHE / MIKE 1D Use |
Advantages |
Limitations |
Recommendation |
| Indus River System Authority |
Indus system |
Daily flows |
Public |
Main rivers |
★★★★★ |
| WAPDA |
Pakistan |
Gauging stations |
Official |
By request |
★★★★☆ |
| MERIT Hydro |
Global |
Flow directions |
Consistent |
Canals missing |
★★★★☆ |
5.2 Lakes, Reservoirs and Wetlands
5.3 Canal Network
- the Indus Basin Irrigation System has around 45 major canal commands
- canal seepage and field application are the main recharge sources in the plains
- canal flows are published by provincial irrigation departments
5.4 Typical Preprocessing
- simplify river network
- align river network with DEM
- define channel geometry from surveys or estimated widths
- represent floodplains and wetlands as overland-flow storage
- assign river, reservoir and tidal boundary conditions
6. Land Cover and Vegetation
6.1 Purpose in MIKE SHE
Land cover and vegetation define interception, ET parameters, root depth, crop coefficients, Manning roughness, irrigation zones, and impervious areas.
6.2 Dataset Comparison
| Dataset |
Coverage |
Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| ESA WorldCover |
Global |
10 m |
Primary |
Detailed |
2020–2021 |
★★★★☆ |
| Dynamic World |
Global |
10 m |
Seasonal crops |
Near-real-time |
— |
★★★☆☆ |
6.3 Vegetation Datasets
| Parameter |
Dataset |
Use |
Recommendation |
| LAI |
MODIS MCD15A3H |
Seasonal LAI |
★★★★☆ |
| NDVI |
Sentinel-2 / Landsat |
Crop calendars and phenology |
★★★★☆ |
| Crop coefficient |
FAO-56 |
Wheat, rice, cotton, sugarcane |
★★★★☆ |
6.4 Typical Preprocessing
- separate rabi (wheat) and kharif (rice, cotton) seasons
- map canal commands and tubewell areas
7. Meteorological Forcing
7.1 Precipitation
| Dataset |
Coverage |
Resolution |
Temporal Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| CHIRPS |
50°S–50°N |
~5 km |
Daily |
Plains |
Gauge-blended |
Mountains |
★★★★☆ |
| APHRODITE |
Monsoon Asia |
0.25° |
Daily |
History |
Gauge-based |
Ends 2015 |
★★★☆☆ |
| ERA5-Land |
Global |
~9 km |
Hourly |
Mountains |
Complete |
Bias |
★★★☆☆ |
| Pakistan Meteorological Department |
Pakistan |
Point |
Daily |
Bias correction |
Official |
By request |
★★★★☆ |
7.2 Climate Variables
7.3 Notes
- include snow and glacier melt for upper Indus basins
- expect large precipitation uncertainty at high altitude
8. Soil Data
8.1 Dataset Comparison
| Dataset |
Coverage |
Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| SoilGrids |
Global |
250 m |
Primary |
Gridded |
Few local profiles |
★★★☆☆ |
| Soil Survey of Pakistan |
Pakistan |
Reconnaissance |
Refinement |
Local |
By request |
★★★☆☆ |
8.2 Typical Preprocessing
- account for saline and sodic soils
9. Hydrogeology
9.1 Dataset Comparison
| Dataset |
Coverage |
Use |
Advantages |
Limitations |
Recommendation |
| Geological Survey of Pakistan |
Pakistan |
Geological maps |
Official |
Interpretation needed |
★★★★☆ |
| WAPDA / PCRWR reports |
Indus Basin |
Aquifer data |
Local |
Reports |
★★★★☆ |
9.2 Conceptual Model Recommendations
- thick unconfined alluvial aquifer
- fresh groundwater over saline groundwater
- canal seepage as line recharge
- karez and valley aquifers in Balochistan
10. Groundwater Data
| Dataset |
Coverage |
Use |
Recommendation |
| Punjab Irrigation Department |
Punjab |
Pre- and post-monsoon depth to water |
★★★★★ |
| PCRWR |
Pakistan |
Water quality and monitoring |
★★★★☆ |
| Sindh Irrigation Department |
Sindh |
Monitoring |
★★★☆☆ |
11. Water Management
11.1 Relevant Processes
- canal irrigation and distribution
- private tubewells
- Tarbela and Mangla reservoirs
- drainage schemes
11.2 Regulatory Framework
- Water Apportionment Accord (1991)
- National Water Policy (2018)
- Punjab Water Act (2019) for groundwater
- Indus Waters Treaty (1960); since 2025 its status has been contested between India and Pakistan
11.3 Key Institutions
12. Remote Sensing Products
13. Calibration Datasets
Recommended strategy: include canal seepage and tubewell pumping and calibrate against seasonal heads.
14. Typical MIKE SHE Workflow
- Define modelling objective and domain.
- Prepare the DEM from Copernicus GLO-30.
- Build the river network from MERIT Hydro and canal maps.
- Prepare land cover from WorldCover.
- Assign vegetation parameters, rooting depths and crop calendars.
- Prepare precipitation from CHIRPS or APHRODITE.
- Prepare climate forcing and reference ET from ERA5-Land.
- Prepare soil properties from SoilGrids.
- Build hydrogeological layers from GSP and WAPDA reports.
- Add pumping and irrigation from tubewell estimates.
- Couple rivers and groundwater.
- Calibrate against irrigation department heads and IRSA flows.
- Validate with GRACE and ET products.
- Document assumptions and uncertainties.
15. Minimum Dataset Package
16. Recommended Dataset Package
17. Premium Dataset Package
| Dataset Type |
Possible Source |
Purpose |
| Canal flow records |
Irrigation departments |
Seepage |
| Tubewell census |
Provinces |
Pumping |
| Salinity surveys |
PCRWR, WAPDA |
Quality |
18. Dataset Comparison Table Template
| Dataset |
Coverage |
Spatial Resolution |
Temporal Resolution |
Time Period |
Format |
API / Access |
License |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
|
|
|
|
|
|
|
|
|
|
|
★☆☆☆☆ |
19. Data Preparation Checklist
Terrain
- [ ] DEM downloaded (or requested) and licence checked
- [ ] DEM projected and clipped
- [ ] drainage checked against river network
Surface Water
- [ ] river network prepared
- [ ] reservoirs, wetlands and floodplains identified
- [ ] boundary conditions assigned
Land Cover and Vegetation
- [ ] land cover reclassified
- [ ] irrigated areas and crop calendars defined
- [ ] LAI and rooting depths assigned
Weather
- [ ] precipitation prepared and compared with station data
- [ ] climate forcing prepared
- [ ] reference ET calculated
Soil
- [ ] soil data downloaded or requested
- [ ] hydraulic parameters derived
Groundwater
- [ ] geology and hydrogeology collected
- [ ] heads and pumping data requested
- [ ] boundary conditions defined
Calibration and Validation
- [ ] discharge data obtained
- [ ] ET and remote-sensing validation data prepared
- [ ] calibration and validation periods defined
Pakistan-specific
- [ ] canal seepage included
- [ ] saline zones mapped
- [ ] snow represented where relevant
20. References and Official Data Portals
National and regional sources
Global sources
21. Notes on Uncertainty
- canal seepage and field losses
- tubewell pumping
- mountain precipitation
- saline groundwater
- data access
A defensible model should document dataset choices, preprocessing assumptions, calibration strategy, validation results, and known limitations.
22. Provincial Data Sources
| Province / Region |
Key Holders |
Hydrological Focus |
| Punjab |
Punjab Irrigation Department |
Canal irrigation, depletion around Lahore |
| Sindh |
Sindh Irrigation Department |
Saline groundwater, waterlogging, delta |
| Khyber Pakhtunkhwa |
KP Irrigation Department |
Peshawar valley, floods |
| Balochistan |
Balochistan Irrigation Department |
Valley aquifer depletion, karez |
| Gilgit-Baltistan |
Local authorities, WAPDA |
Glaciers and snowmelt |