MIKE SHE Public Data Catalog
Philippines
Version: 0.1 test template
Purpose: Country-specific public dataset catalog for building simple to advanced MIKE SHE models
Region: Republic of the Philippines (Luzon, Visayas, Mindanao and more than 7,000 islands)
Quick Start
Minimum Public Datasets for Recharge Modelling with MIKE SHE (Philippines)
If your objective is to calculate distributed groundwater recharge (without simulating groundwater flow or rivers), only five dataset categories are required.
Good national geodata exist (NAMRIA land cover, LiDAR for major floodplains), but climate station data are mostly obtained by request from PAGASA.
| MIKE SHE Input |
Dataset Type |
Recommended Dataset |
Spatial Availability |
Why recommended |
| Topography (DEM) |
Gridded |
LiPAD – Phil-LiDAR portal LiDAR DTMs (1 m, major floodplains)
FABDEM elsewhere |
Floodplains / global |
The Phil-LiDAR programmes mapped most major river basins at 1 m. Check portal availability; NAMRIA's national 5 m IfSAR DEM is available by request. |
| Land Cover |
Vector |
Geoportal Philippines (NAMRIA) (NAMRIA land cover) |
Philippines |
Official national land-cover map; use with WorldCover for detail. |
| Soil Hydraulic Properties |
Vector / gridded |
Bureau of Soils and Water Management soil maps
SoilGrids |
Philippines |
BSWM provides national and provincial soil maps; SoilGrids offers gridded texture for pedotransfer functions. |
| Precipitation |
Gridded |
CHIRPS (daily)
GSMaP / GPM IMERG (typhoons, sub-daily) |
Philippines |
Complete coverage; GSMaP performs well for typhoon rainfall but needs bias correction. |
|
Time Series |
PAGASA synoptic stations
DOST-ASTI automated weather stations |
Nationwide |
PAGASA data by request (often free for academic use); ASTI stations give recent automated data. |
| Meteorological Forcing / Potential ET |
Gridded |
ERA5-Land |
Global |
Hourly variables for FAO-56 reference ET. |
|
Time Series |
PAGASA |
Synoptic stations |
Full climate variables. |
Optional Improvements
Recommended Workflow
- Download LiPAD LiDAR or FABDEM for the model domain.
- Delineate the model domain and prepare the terrain model.
- Download NAMRIA land cover and assign MIKE SHE vegetation classes.
- Download BSWM soil maps or SoilGrids and derive van Genuchten parameters using pedotransfer functions.
- Choose your meteorological forcing:
- Option A (recommended): Use CHIRPS or GSMaP/IMERG bias-corrected with PAGASA gauges, and ERA5-Land for other variables.
- Option B: Use PAGASA station data directly.
- Let MIKE SHE calculate evapotranspiration internally using the selected vegetation and soil parameters.
- Check simulated actual ET against GLEAM or MODIS MOD16.
- 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 the Philippines.
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:
- typhoon flood studies
- river basin water-balance models
- groundwater and land subsidence studies (e.g. Metro Manila, Pampanga)
- irrigation (rice) water management
- small-island water supply
- applied MIKE SHE model setup
1.3 General Notes for Philippines
- The geodetic reference is PRS92, being replaced by the Philippine Geodetic Reference Frame (PGRF); projections use Philippine Transverse Mercator zones or UTM 50–52.
- Water permits and groundwater regulation are handled by the NWRB.
- Hazard and flood datasets from Project NOAH and Phil-LiDAR are valuable for model setup and validation.
2. Hydrological Characteristics of the Philippines
2.1 Climate
- tropical maritime climate
- south-west monsoon (Habagat, June–September) and north-east monsoon (Amihan, November–February)
- around 20 tropical cyclones enter the area each year
- annual rainfall from about 1,000 mm to more than 4,000 mm depending on exposure
- ENSO-related droughts affecting reservoirs (e.g. Angat)
2.2 Topography
- mountainous volcanic islands
- large alluvial plains (Central Luzon, Cagayan Valley)
- deltas and coastal lowlands around Manila Bay
- karst areas (e.g. Bohol, Cebu)
- active volcanoes and lahar-affected rivers (e.g. Pinatubo)
2.3 Major Hydrological Challenges
- typhoon flooding and storm surge
- land subsidence from groundwater pumping around Manila Bay
- seawater intrusion (Metro Manila, Cebu)
- water supply shortages in Metro Manila
- landslides and sediment
- watershed degradation
2.4 Major Aquifer Systems
Important aquifer settings include:
- Guadalupe Formation and alluvial aquifers of Metro Manila
- Pampanga and Central Luzon alluvial plains
- Cebu limestone aquifers
- volcanic aquifers and springs
- karst aquifers (e.g. Bohol)
- small-island freshwater lenses
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 |
| LiPAD – Phil-LiDAR portal |
Major floodplains |
1 m |
Primary where available |
Very detailed |
Portal availability varies |
★★★★★ |
| NAMRIA IfSAR |
Philippines |
5 m |
National |
Consistent |
By request |
★★★★☆ |
| FABDEM |
Global |
30 m |
Gap filling |
Free |
Coarser |
★★★★☆ |
4.3 Typical Preprocessing
- reproject to PRS92 / PTM or UTM
- 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 lahar-affected channels for changes since acquisition
- check coastal subsidence areas
- merge LiDAR and global DEM carefully at edges
5. Surface Water
5.1 Rivers
5.2 Lakes, Reservoirs and Wetlands
5.3 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 |
| Geoportal Philippines (NAMRIA) land cover |
Philippines |
1:50,000 equivalent |
Primary |
Official |
Update cycle |
★★★★★ |
| ESA WorldCover |
Global |
10 m |
Detail |
Consistent |
2020–2021 |
★★★★☆ |
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 |
Rice, sugarcane, coconut, corn |
★★★★☆ |
6.4 Typical Preprocessing
- separate rice (irrigated and rainfed), coconut, sugarcane, forest, grassland and urban
- represent irrigation schemes (NIA)
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 |
Long-term |
Gauge-blended |
Daily only |
★★★★★ |
| GSMaP |
Global |
~10 km |
Hourly |
Typhoon events |
Good in Asia |
Bias |
★★★★☆ |
| GPM IMERG |
Global |
~10 km |
30 min |
Events |
Sub-daily |
Bias |
★★★★☆ |
| PAGASA |
Philippines |
Point |
Daily/hourly |
Bias correction |
Official |
By request |
★★★★★ |
| DOST-ASTI automated weather stations |
Philippines |
Point |
10 min |
Recent events |
Dense |
Short records |
★★★☆☆ |
7.2 Climate Variables
7.3 Notes
- use sub-daily forcing for typhoon events
- bias-correct satellite rainfall on windward slopes
8. Soil Data
8.1 Dataset Comparison
| Dataset |
Coverage |
Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| Bureau of Soils and Water Management |
Philippines |
Provincial maps |
Soil zonation |
National |
Hydraulic parameters needed |
★★★★☆ |
| SoilGrids |
Global |
250 m |
Gridded parameters |
Consistent |
Few local profiles |
★★★☆☆ |
8.2 Typical Preprocessing
- derive parameters with tropical pedotransfer functions
- treat volcanic and lahar deposits separately
9. Hydrogeology
9.1 Dataset Comparison
| Dataset |
Coverage |
Use |
Advantages |
Limitations |
Recommendation |
| Mines and Geosciences Bureau |
Philippines |
Geological and groundwater maps |
Official |
Generalized |
★★★★☆ |
| NWRB groundwater resource maps |
Philippines |
Aquifer availability |
Water-resource focus |
Coarse |
★★★☆☆ |
| WHYMAP |
Global |
Screening |
Consistent |
Coarse |
★★☆☆☆ |
9.2 Conceptual Model Recommendations
- multi-layer coastal aquifers with compaction (Manila Bay)
- volcanic aquifers and springs
- karst limestone
- island freshwater lenses
10. Groundwater Data
| Dataset |
Coverage |
Use |
Recommendation |
| National Water Resources Board |
Philippines |
Water permits and monitoring |
★★★★☆ |
| Water utilities (MWSS concessionaires, water districts) |
Local |
Wellfield heads and pumping |
★★★★☆ |
| IGRAC GGIS |
Global |
Supplementary |
★★☆☆☆ |
11. Water Management
11.1 Relevant Processes
- irrigation for rice (NIA systems)
- Angat and other multipurpose reservoirs
- groundwater pumping for cities
- flood control
11.2 Regulatory Framework
- Water Code of the Philippines (PD 1067) — water permits from NWRB
- Clean Water Act (RA 9275)
- river basin management via DENR
11.3 Key Institutions
12. Remote Sensing Products
13. Calibration Datasets
| Target |
Dataset |
Use |
Recommendation |
| Discharge |
DPWH, NIA and project gauges |
Streamflow |
★★★★☆ |
| Flood extent |
Sentinel-1 SAR |
Typhoon floods |
★★★★★ |
| Heads |
Utilities and NWRB |
SZ calibration |
★★★☆☆ |
| Subsidence |
Sentinel-1 InSAR |
Compaction |
★★★★☆ |
Recommended strategy: combine discharge with flood-extent and InSAR data.
14. Typical MIKE SHE Workflow
- Define modelling objective and domain.
- Prepare the DEM from LiPAD LiDAR and FABDEM.
- Build the river network from LiPAD and MERIT Hydro.
- Prepare land cover from NAMRIA land cover.
- Assign vegetation parameters, rooting depths and crop calendars.
- Prepare precipitation from CHIRPS or GSMaP/IMERG with PAGASA gauges.
- Prepare climate forcing and reference ET from ERA5-Land.
- Prepare soil properties from BSWM and SoilGrids.
- Build hydrogeological layers from MGB and NWRB maps.
- Add pumping and irrigation from NWRB permits and utility records.
- Couple rivers and groundwater.
- Calibrate against available discharge and heads.
- Validate with Sentinel-1 flood extents and InSAR.
- Document assumptions and uncertainties.
15. Minimum Dataset Package
16. Recommended Dataset Package
| Model Element |
Dataset |
| DEM |
LiPAD LiDAR + IfSAR |
| Precipitation |
GSMaP/IMERG + PAGASA |
| Soils |
BSWM + SoilGrids |
| Validation |
Sentinel-1 + NOAH hazard maps |
17. Premium Dataset Package
| Dataset Type |
Possible Source |
Purpose |
| Discharge gauging |
Project installation |
Calibration |
| Monitoring wells |
Utilities |
Heads |
| Pumping tests |
Projects |
Aquifer parameters |
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
Philippines-specific
- [ ] LiPAD availability checked
- [ ] PAGASA data request made
- [ ] typhoon events selected for calibration
20. References and Official Data Portals
National and regional sources
Global sources
21. Notes on Uncertainty
- typhoon rainfall intensity
- LiDAR age and channel change
- groundwater pumping in cities
- limited long discharge records
- subsidence rates
A defensible model should document dataset choices, preprocessing assumptions, calibration strategy, validation results, and known limitations.