MIKE SHE Public Data Catalog
Singapore
Version: 0.1 test template
Purpose: Country-specific public dataset catalog for building simple to advanced MIKE SHE models
Region: Republic of Singapore (main island and offshore islands)
Quick Start
Minimum Public Datasets for Recharge Modelling with MIKE SHE (Singapore)
If your objective is to calculate distributed groundwater recharge (without simulating groundwater flow or rivers), only five dataset categories are required.
Singapore is a small, highly urbanized city-state. Groundwater is not used for public water supply, so recharge modelling mainly serves reservoir catchment yield, green-blue infrastructure, reclaimed land and excavation studies. Several national datasets are restricted; the free options below are the most practical starting point.
| MIKE SHE Input |
Dataset Type |
Recommended Dataset |
Spatial Availability |
Why recommended |
| Topography (DEM) |
Gridded |
Copernicus GLO-30 |
Global |
Free 30 m DEM. Note that global DEMs pre-date recent land reclamation and are coarse relative to urban drainage. Higher-resolution national 3D data (Singapore Land Authority) are restricted. |
| Land Cover |
Vector |
URA Master Plan land use (via data.gov.sg)
ESA WorldCover |
Singapore |
The Master Plan gives official land-use zoning at parcel level; WorldCover shows actual vegetation and built-up cover at 10 m. |
| Soil Hydraulic Properties |
— |
Geological map and literature values |
Singapore |
Global soil products are unreliable in urban and reclaimed areas. Assign parameters by geological unit (e.g. Bukit Timah Granite residual soils, Jurong Formation, Old Alluvium, Kallang Formation, fill). |
| Precipitation |
Time Series |
Meteorological Service Singapore – historical daily records
Real-time 5-minute rainfall via data.gov.sg |
~60 stations |
Very dense station network; the data.gov.sg API provides high-frequency rainfall for storm events. |
|
Gridded |
GPM IMERG / GSMaP |
Global |
Only as a regional check; too coarse for Singapore itself. |
| Meteorological Forcing / Potential ET |
Time Series |
Meteorological Service Singapore – historical daily records |
Selected stations |
Temperature, wind and rainfall; the Changi climate station has the longest record. |
|
Gridded |
ERA5-Land |
Global |
Humidity and radiation where station data are missing (coarse, partly over sea). |
Optional Improvements
| Dataset |
Purpose |
| PUB, Singapore's National Water Agency |
Drainage network, catchments, reservoirs (mainly by request) |
| Geology of Singapore (Defence Science and Technology Agency) |
Geological map and descriptions of formations |
| Sentinel-2 |
Vegetation and green-roof mapping |
Recommended Workflow
- Download Copernicus GLO-30 for the model domain.
- Delineate the model domain and prepare the terrain model.
- Download URA Master Plan and WorldCover and assign MIKE SHE vegetation classes.
- Download geological units and derive van Genuchten parameters using pedotransfer functions.
- Choose your meteorological forcing:
- Option A (recommended): Use MSS station rainfall interpolated across the island.
- Option B: Use 5-minute rainfall from data.gov.sg for event simulations.
- Let MIKE SHE calculate evapotranspiration internally using the selected vegetation and soil parameters.
- Represent paved areas and storm drainage explicitly.
- Check simulated actual ET against literature values for tropical urban vegetation.
- 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 Singapore.
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:
- reservoir catchment yield studies
- urban stormwater and green-blue infrastructure (ABC Waters) assessments
- groundwater and settlement studies for deep excavations and tunnels
- reclaimed land hydrology
- sea-level rise and coastal protection studies
1.3 General Notes for Singapore
- Most detailed data (drainage, geotechnical boreholes, LiDAR) are held by agencies and released by request.
- Coordinate system: SVY21 (EPSG:3414); heights refer to the Singapore Height Datum.
- MIKE SHE is often coupled with urban drainage models (e.g. MIKE+) in Singapore.
2. Hydrological Characteristics of Singapore
2.1 Climate
- equatorial climate with no dry season
- annual rainfall around 2,300–2,600 mm
- north-east (December–March) and south-west (June–September) monsoons, with inter-monsoon thunderstorms
- intense convective storms and pre-dawn squall lines (Sumatra squalls)
2.2 Topography
- low-lying island, highest point about 164 m (Bukit Timah)
- dense urban area with extensive paved surfaces
- large reclaimed areas along the coast
- reservoirs created by damming estuaries (e.g. Marina, Punggol, Serangoon)
2.3 Major Hydrological Challenges
- flash floods from intense rainfall
- maximizing catchment yield to reservoirs (around two-thirds of land area is water catchment)
- groundwater drawdown and settlement around deep excavations
- groundwater in reclaimed land
- sea-level rise
2.4 Major Aquifer Systems
Groundwater is not used for public supply, but matters for construction and catchment hydrology. Key geological units:
- Old Alluvium (eastern Singapore)
- Bukit Timah Granite and its residual soils (central)
- Jurong Formation sedimentary rocks (western)
- Kallang Formation soft marine clays and fill (low-lying areas)
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 |
Screening |
Free |
Pre-dates reclamation; urban artefacts |
★★★☆☆ |
| FABDEM |
Global |
30 m |
Screening |
Buildings removed |
Licence terms |
★★★☆☆ |
| SLA 3D mapping |
Singapore |
Sub-metre |
Detailed models |
Very accurate |
Restricted |
★★★★★ |
4.3 Typical Preprocessing
- reproject to SVY21
- 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 reclaimed coastline against current imagery
- burn in canals and drains
- check reservoirs and tidal gates
5. Surface Water
5.1 Rivers
| Dataset |
Coverage |
MIKE SHE / MIKE 1D Use |
Advantages |
Limitations |
Recommendation |
| PUB, Singapore's National Water Agency |
Singapore |
Canals, drains, catchments |
Official |
By request |
★★★★★ |
| OpenStreetMap |
Singapore |
Canals and waterways |
Free |
Incomplete for drains |
★★★☆☆ |
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 |
| URA Master Plan land use (via data.gov.sg) |
Singapore |
Parcel |
Land-use zoning |
Official |
Zoning, not actual cover |
★★★★☆ |
| ESA WorldCover |
Global |
10 m |
Vegetation and built-up |
Actual cover |
2020–2021 only |
★★★★☆ |
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 |
Urban vegetation, turf, secondary forest |
★★★★☆ |
6.4 Typical Preprocessing
- separate paved, building, green-space, forest and water classes
- estimate impervious fractions
- include green roofs and bioretention where relevant
7. Meteorological Forcing
7.1 Precipitation
| Dataset |
Coverage |
Resolution |
Temporal Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| Meteorological Service Singapore – historical daily records |
Singapore |
~60 stations |
Daily (historical) |
Primary forcing |
Dense |
Point data |
★★★★★ |
| data.gov.sg rainfall API |
Singapore |
~60 stations |
5 min |
Event forcing |
High frequency |
Real-time focus; archive via API |
★★★★☆ |
| GPM IMERG |
Global |
~10 km |
30 min |
Regional check |
Consistent |
Too coarse |
★★☆☆☆ |
7.2 Climate Variables
7.3 Notes
- rainfall varies strongly over short distances in convective storms
- use sub-daily forcing for flood studies
8. Soil Data
8.1 Dataset Comparison
| Dataset |
Coverage |
Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| Geology of Singapore (DSTA) |
Singapore |
1:25,000 maps |
Soil and aquifer zones |
Country-specific |
Geological, not hydraulic |
★★★★☆ |
| SoilGrids |
Global |
250 m |
Not recommended |
— |
Unreliable in urban areas |
★☆☆☆☆ |
8.2 Typical Preprocessing
- assign parameters by geological unit and fill type
- use geotechnical borehole data where available
9. Hydrogeology
9.1 Dataset Comparison
| Dataset |
Coverage |
Use |
Advantages |
Limitations |
Recommendation |
| Geology of Singapore (DSTA) |
Singapore |
Geological framework |
Detailed |
Hydraulic data limited |
★★★★☆ |
| Geotechnical investigations (BCA, LTA and projects) |
Local |
Borehole logs, permeability |
Detailed |
By request |
★★★★★ |
9.2 Conceptual Model Recommendations
- residual soils over granite with shallow water tables
- soft marine clay aquitards
- fill over marine clay in reclaimed areas
- tidal and sea-level boundaries
10. Groundwater Data
| Dataset |
Coverage |
Use |
Recommendation |
| Construction and tunnel project monitoring |
Local |
Heads and settlement |
★★★★☆ |
There is no public national groundwater monitoring network.
11. Water Management
11.1 Relevant Processes
- reservoirs and catchment management
- urban drainage
- NEWater and desalination (outside the MIKE SHE domain)
- dewatering for excavations
11.2 Regulatory Framework
- Public Utilities Act and PUB regulations for water and drainage
- building and excavation controls (Building and Construction Authority)
11.3 Key Institutions
12. Remote Sensing Products
13. Calibration Datasets
Calibration relies mostly on PUB data and project monitoring, obtained by request.
14. Typical MIKE SHE Workflow
- Define modelling objective and domain.
- Prepare the DEM from Copernicus GLO-30 or SLA data.
- Build the river network from PUB drainage data.
- Prepare land cover from URA Master Plan and WorldCover.
- Assign vegetation parameters, rooting depths and crop calendars.
- Prepare precipitation from MSS stations.
- Prepare climate forcing and reference ET from MSS and ERA5-Land.
- Prepare soil properties from geological units.
- Build hydrogeological layers from the geological map and borehole logs.
- Add pumping and irrigation from dewatering records.
- Couple rivers and groundwater.
- Calibrate against PUB flows and project heads.
- Validate with flood observations.
- Document assumptions and uncertainties.
15. Minimum Dataset Package
16. Recommended Dataset Package
| Model Element |
Dataset |
| DEM |
SLA data (by request) |
| Drainage |
PUB network |
| Precipitation |
MSS + 5-minute data |
| Subsurface |
Geotechnical boreholes |
17. Premium Dataset Package
| Dataset Type |
Possible Source |
Purpose |
| LiDAR / 3D city model |
SLA |
Detailed terrain |
| Drain survey |
PUB |
Drainage model |
| Monitoring wells |
Project installation |
Heads |
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
Singapore-specific
- [ ] reclaimed areas checked
- [ ] impervious fractions defined
- [ ] data requests to PUB and SLA made
20. References and Official Data Portals
National and regional sources
Global sources
21. Notes on Uncertainty
- urban drainage and impervious fractions
- DEM resolution and reclamation changes
- highly local convective rainfall
- subsurface heterogeneity and fill
A defensible model should document dataset choices, preprocessing assumptions, calibration strategy, validation results, and known limitations.