MIKE SHE Public Data Catalog
China
Version: 0.1 test template
Purpose: Country-specific public dataset catalog for building simple to advanced MIKE SHE models
Region: People's Republic of China (mainland)
Quick Start
Minimum Public Datasets for Recharge Modelling with MIKE SHE (China)
If your objective is to calculate distributed groundwater recharge (without simulating groundwater flow or rivers), only five dataset categories are required.
China has rich national research datasets, many distributed through Chinese Academy of Sciences data centres. Official station and hydrological data (CMA, MWR) are restricted, and most portals require registration with a Chinese mobile number. Foreign organisations should also check surveying and data-export rules before collecting or exporting geographic data (see section 1.3).
| MIKE SHE Input |
Dataset Type |
Recommended Dataset |
Spatial Availability |
Why recommended |
| Topography (DEM) |
Gridded |
Copernicus GLO-30 |
Global |
Consistent 30 m DEM freely available for all of China. No high-resolution national DEM is publicly released. |
| Land Cover |
Gridded |
China Land Cover Dataset (CLCD)
GlobeLand30, ESA WorldCover |
China / global |
CLCD provides annual 30 m land cover from 1985, useful for long simulations with land-use change. GlobeLand30 (national mapping agency) and WorldCover are good alternatives. |
| Soil Hydraulic Properties |
Gridded |
China soil hydraulic parameters dataset (Dai et al., 2013, via TPDC) |
China |
Gridded (~1 km) soil hydraulic parameters for China, including van Genuchten parameters derived with pedotransfer functions from the national soil survey — similar in role to POLARIS in the US. |
| Precipitation |
Gridded |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
China |
Gauge-corrected gridded forcing (0.1°, 3-hourly, from 1979), including precipitation. The standard research forcing for Chinese land-surface and hydrological modelling. |
|
Gridded |
GPM IMERG / GSMaP
CHIRPS (south of 50°N) |
Global |
Sub-daily satellite rainfall for events; CHIRPS does not cover the far north-east. |
| Meteorological Forcing / Potential ET |
Gridded |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
China |
Temperature, humidity, wind, pressure and radiation for FAO-56 reference ET. |
|
Time Series |
China Meteorological Data Service Centre (CMA) |
~2,400 national stations |
Daily station data; registration required and access for foreign users is limited. |
Optional Improvements
| Dataset |
Purpose |
| ERA5-Land |
Hourly fallback forcing where CMFD access or period is insufficient |
| China Geological Survey GeoCloud |
Hydrogeological maps and groundwater data |
| PML-V2 China evapotranspiration (via TPDC) |
Validation of actual ET at 500 m |
| China daily snow depth dataset (via TPDC) |
Snow depth for northern and plateau basins |
| GRACE / GRACE-FO |
Regional groundwater storage change (e.g. North China Plain) |
Recommended Workflow
- Download Copernicus GLO-30 for the model domain.
- Delineate the model domain and prepare the terrain model.
- Download CLCD and assign MIKE SHE vegetation classes.
- Download the China soil hydraulic parameters dataset and derive van Genuchten parameters using pedotransfer functions.
- Choose your meteorological forcing:
- Option A (recommended): Use CMFD for precipitation and all climate variables.
- Option B: Use ERA5-Land with IMERG/GSMaP rainfall where CMFD is unavailable.
- Let MIKE SHE calculate evapotranspiration internally using the selected vegetation and soil parameters.
- Represent paddy ponding in the south and irrigation of winter wheat and maize in the north.
- Check simulated actual ET against PML-V2 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 China.
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:
- groundwater depletion and recovery studies (e.g. North China Plain)
- river basin water-balance models
- irrigation district studies
- karst hydrology
- arid inland basin (oasis) studies
- snow and glacier-fed basins
- sponge city and urban flood studies
- applied MIKE SHE model setup
1.3 General Notes for China
- Most portals are in Chinese and require registration, often with a Chinese mobile number.
- China's Surveying and Mapping Law and Data Security Law restrict surveying by foreign organisations and the export of high-precision geographic data. Projects involving field surveys or data transfer abroad should be checked with a local partner.
- Geodetic datum: CGCS2000; projections typically Gauss-Krüger 3° or 6° zones; heights in the 1985 National Height Datum.
- Chinese web maps use the offset GCJ-02 coordinate system (shifted by up to several hundred metres); do not digitize model data from them without correction.
- Hydrological Yearbooks (MWR) contain the main discharge records but are not freely distributed; access usually requires a Chinese partner institution.
2. Hydrological Characteristics of China
2.1 Climate
- East Asian monsoon in the east and south, with most rainfall in summer
- arid and semi-arid north-west with inland drainage basins
- cold high-altitude climate on the Tibetan Plateau
- annual rainfall from under 50 mm (Tarim Basin) to over 2,000 mm (south-east coast)
- typhoons along the south-east coast
- extreme rainfall events (e.g. Henan, 2021)
2.2 Topography
- three-step terrain: Tibetan Plateau, central plateaus and basins, eastern plains
- North China Plain, North-east Plain and middle–lower Yangtze Plain
- Loess Plateau with deep erodible loess
- karst landscapes in the south-west (Guizhou, Guangxi, Yunnan)
- large inland basins in the north-west (Tarim, Junggar, Qaidam)
- major rivers: Yangtze, Yellow, Pearl, Songhua, Hai, Huai
2.3 Major Hydrological Challenges
- groundwater depletion and land subsidence in the North China Plain
- water scarcity and sediment in the Yellow River basin
- Yangtze and urban floods
- soil erosion on the Loess Plateau
- karst rocky desertification and fast karst flow
- oasis water use in arid inland basins
- glacier and snow change on the plateau
- seawater intrusion on the Bohai and Shandong coasts
- inter-basin transfers (South-to-North Water Diversion)
2.4 Major Aquifer Systems
Important aquifer settings include:
- North China Plain Quaternary aquifers (shallow unconfined and deep confined)
- North-east plains (Songnen, Sanjiang)
- North China karst aquifers with large springs (e.g. Jinan)
- south-west karst systems
- north-west inland basin alluvial fans (e.g. Heihe, Shiyang, Tarim)
- Yangtze and Pearl River delta aquifers (historical subsidence, e.g. Shanghai)
- Loess Plateau aquifers
3. Recommended Dataset Stack
| Component |
Recommended Dataset |
Alternative Dataset |
Importance |
| DEM |
Copernicus GLO-30 |
AW3D30, FABDEM |
★★★★★ |
| Land cover |
China Land Cover Dataset (CLCD) |
GlobeLand30, ESA WorldCover, Resource and Environment Science and Data Center (CAS) land use |
★★★★★ |
| LAI |
MODIS MCD15A3H |
GLASS LAI (via National Earth System Science Data Center) |
★★★★☆ |
| Precipitation |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
GPM IMERG, GSMaP, China Meteorological Data Service Centre (CMA) |
★★★★★ |
| Climate forcing |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
ERA5-Land |
★★★★★ |
| Potential ET |
FAO-56 from CMFD |
ERA5-Land |
★★★★☆ |
| Rivers and basins |
MERIT Hydro |
National Catalogue Service for Geographic Information (1:1,000,000 and 1:250,000 public data) |
★★★★★ |
| Soil |
China soil hydraulic parameters dataset (Dai et al., 2013, via TPDC) |
HWSD v2, SoilGrids |
★★★★★ |
| Hydrogeology |
China Geological Survey GeoCloud |
WHYMAP |
★★★★★ |
| Groundwater heads |
China Geological Environment Monitoring groundwater level yearbooks, China Geological Survey GeoCloud |
MWR groundwater bulletins |
★★★★☆ |
| Streamflow |
MWR Hydrological Yearbooks (restricted) |
MWR national real-time water and rain information, GRDC |
★★★★☆ |
| Actual ET |
PML-V2 China evapotranspiration (via TPDC) |
MODIS MOD16, GLEAM |
★★★★☆ |
| Snow and glaciers |
China daily snow depth dataset (via TPDC) |
MODIS Snow Cover, Randolph Glacier Inventory |
★★★★☆ |
| Storage change |
GRACE / GRACE-FO |
— |
★★★★☆ |
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 |
Consistent, free |
Canopy and buildings included |
★★★★★ |
| FABDEM |
Global |
30 m |
Forested and urban areas |
Canopy removed |
Licence terms |
★★★★☆ |
| AW3D30 |
Global |
30 m |
Comparison |
Independent |
Voids |
★★★☆☆ |
4.3 Typical Preprocessing
- reproject to CGCS2000 / Gauss-Krüger 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 loess gullies and terraced fields
- check karst depressions (real closed depressions must not be filled)
- check levees and polders in the Yangtze plain
- check subsidence areas in the North China Plain
5. Surface Water
5.1 Rivers
5.2 Lakes, Reservoirs and Wetlands
5.3 Irrigation Districts and Transfers
- large irrigation districts (e.g. Hetao, Jingdian) divert river water and create major recharge
- South-to-North Water Diversion supplies the North China Plain and is used for ecological groundwater replenishment
- canals and dams strongly modify flows in most basins
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
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, winter wheat, maize, cotton |
★★★★☆ |
6.4 Typical Preprocessing
- separate paddy and dry cropland
- define winter wheat–summer maize double cropping in the north
- represent orchards and terraces on the Loess Plateau
- represent oasis agriculture and desert in the north-west
7. Meteorological Forcing
7.1 Precipitation
| Dataset |
Coverage |
Resolution |
Temporal Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| China Meteorological Forcing Dataset (CMFD, via TPDC) |
China |
0.1° |
3-hourly |
Primary forcing |
Gauge-corrected, complete |
Registration; check period coverage |
★★★★★ |
| CN05.1 |
China |
0.25° |
Daily |
Alternative |
Gauge-based |
Coarse |
★★★☆☆ |
| GPM IMERG |
Global |
~10 km |
30 min |
Events |
Sub-daily |
Bias |
★★★★☆ |
| GSMaP |
Global |
~10 km |
Hourly |
Events |
Good in Asia |
Bias |
★★★★☆ |
| China Meteorological Data Service Centre (CMA) |
China |
Point |
Daily |
Bias correction |
Official |
Restricted access |
★★★★☆ |
7.2 Climate Variables
| Variable |
Recommended Dataset |
Alternatives |
MIKE SHE Use |
| Air temperature |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
ERA5-Land |
ET, snow |
| Wind speed |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
ERA5-Land |
Penman-Monteith |
| Humidity |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
ERA5-Land |
Vapour-pressure deficit |
| Solar radiation |
China Meteorological Forcing Dataset (CMFD, via TPDC) |
ERA5-Land, NASA POWER |
ET energy term |
| Reference ET |
FAO-56 from China Meteorological Forcing Dataset (CMFD, via TPDC) |
TerraClimate |
PET forcing |
7.3 Notes
- use sub-daily forcing for urban flood and sponge-city studies
- include snow in northern and plateau basins
- precipitation on the Tibetan Plateau is highly uncertain
8. Soil Data
8.1 Dataset Comparison
| Dataset |
Coverage |
Resolution |
MIKE SHE Use |
Advantages |
Limitations |
Recommendation |
| China soil hydraulic parameters dataset (Dai et al., 2013, via TPDC) |
China |
~1 km |
Primary UZ parameterization |
Includes van Genuchten parameters |
Coarse relative to local models |
★★★★★ |
| Soil database of China / HWSD China component (HWSD v2) |
China |
1:1,000,000 |
Soil zonation |
From national survey |
Coarse |
★★★☆☆ |
| SoilGrids |
Global |
250 m |
Alternative |
Six depths |
Fewer Chinese profiles |
★★★☆☆ |
8.2 Typical Preprocessing
- check loess hydraulic properties (thick, relatively uniform)
- represent paddy plough pans
- use thin soils over karst with rapid bypass flow
- account for saline soils in irrigation districts
9. Hydrogeology
9.1 Dataset Comparison
| Dataset |
Coverage |
Use |
Advantages |
Limitations |
Recommendation |
| China Geological Survey GeoCloud |
China |
Hydrogeological maps (national 1:4,000,000 and regional 1:250,000/1:200,000) |
Official |
Registration; Chinese |
★★★★★ |
| Regional hydrogeological survey reports (CGS) |
Regions |
Aquifer structure and parameters |
Detailed |
By request |
★★★★★ |
| WHYMAP |
Global |
Screening |
Consistent |
Coarse |
★★☆☆☆ |
9.2 Conceptual Model Recommendations
- multi-layer aquifers with deep confined pumping and compaction
- karst conduit and spring systems
- alluvial fans with river losses in arid basins
- thick unsaturated zones in loess
- seasonal frozen ground in the north and on the plateau
10. Groundwater Data
| Dataset |
Coverage |
Use |
Recommendation |
| National Groundwater Monitoring Project (~20,000 wells, CGS and MWR) |
China |
Heads |
★★★★★ |
| China Geological Environment Monitoring groundwater level yearbooks |
China |
Published heads |
★★★★☆ |
| MWR groundwater bulletins |
China |
Regional trends |
★★★☆☆ |
| GRACE / GRACE-FO |
China |
Storage change |
★★★★☆ |
Much of the monitoring data are not openly downloadable; access usually needs a Chinese partner.
11. Water Management
11.1 Relevant Processes
- irrigation districts and groundwater irrigation
- reservoirs and hydropower (e.g. Three Gorges)
- inter-basin transfers
- groundwater pumping controls and ecological replenishment in the North China Plain
- sponge city stormwater measures
11.2 Regulatory Framework
- Water Law of the PRC (2002, amended 2016)
- Regulations on Groundwater Management (2021)
- Most Stringent Water Resources Management System ("Three Red Lines": total use, efficiency, pollution limits)
- River Chief System for river management
- seven river basin commissions under MWR
11.3 Key Institutions
12. Remote Sensing Products
13. Calibration Datasets
| Target |
Dataset |
Use |
Recommendation |
| Discharge |
MWR Hydrological Yearbooks, GRDC |
Streamflow |
★★★★☆ |
| Groundwater heads |
National monitoring / yearbooks |
SZ calibration |
★★★★★ |
| Storage change |
GRACE / GRACE-FO |
Regional depletion |
★★★★☆ |
| Actual ET |
PML-V2 China evapotranspiration (via TPDC), ChinaFLUX |
ET validation |
★★★★☆ |
| Subsidence |
Sentinel-1 SAR InSAR |
Compaction |
★★★★☆ |
| Snow depth |
China daily snow depth dataset (via TPDC) |
Snowmelt |
★★★☆☆ |
Recommended strategy: where discharge records are hard to obtain, combine heads, ET products, GRACE and InSAR to constrain the water balance.
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 national geographic data.
- Prepare land cover from CLCD or CNLUCC.
- Assign vegetation parameters, rooting depths and crop calendars.
- Prepare precipitation from CMFD.
- Prepare climate forcing and reference ET from CMFD.
- Prepare soil properties from the China soil hydraulic parameters dataset.
- Build hydrogeological layers from CGS hydrogeological maps and reports.
- Add pumping and irrigation from irrigation district and groundwater permit data.
- Couple rivers and groundwater.
- Calibrate against groundwater heads and available discharge.
- Validate with PML-V2 ET, GRACE and InSAR.
- Document assumptions and uncertainties.
15. Minimum Dataset Package
16. Recommended Dataset Package
| Model Element |
Dataset |
| Land cover |
CLCD + CNLUCC |
| Forcing |
CMFD + IMERG events |
| Heads |
National monitoring |
| Discharge |
Hydrological Yearbooks (via partner) |
| Validation |
PML-V2, GRACE, InSAR |
17. Premium Dataset Package
| Dataset Type |
Possible Source |
Purpose |
| LiDAR / detailed DEM |
Local surveying institutes |
Terrain (export restrictions apply) |
| Irrigation district records |
Irrigation district bureaus |
Diversions and applications |
| Pumping statistics |
Local water bureaus |
Pumping stress |
| Pumping tests and boreholes |
CGS and projects |
Aquifer parameters |
| Isotope and age data |
CAS institutes |
Recharge sources |
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
China-specific
- [ ] registration and access arranged (Chinese mobile number, partner institution)
- [ ] data-export and surveying rules checked
- [ ] GCJ-02 offsets avoided or corrected
- [ ] CMFD period checked against simulation period
20. References and Official Data Portals
National and regional sources
Global sources
21. Notes on Uncertainty
- access to discharge and station data
- irrigation diversions and groundwater pumping
- karst flow paths
- precipitation in mountains and the plateau
- frozen ground and snow
- land-use change over long periods
- subsidence and aquitard compaction
A defensible model should document dataset choices, preprocessing assumptions, calibration strategy, validation results, and known limitations.
22. River Basin Commissions and Regional Settings
The Ministry of Water Resources manages major basins through seven river basin commissions, which hold much of the basin-scale data. Provincial water resources departments and geological surveys hold local data.
| Basin / Region |
Basin Commission |
Hydrological Focus |
| Yangtze |
Changjiang Water Resources Commission |
Floods, Three Gorges, lakes and paddies |
| Yellow River |
Yellow River Conservancy Commission |
Water scarcity, sediment, irrigation districts, Loess Plateau |
| Hai River (North China Plain) |
Haihe River Water Conservancy Commission |
Groundwater depletion, subsidence, water transfers |
| Huai River |
Huaihe River Commission |
Floods, agricultural groundwater |
| Pearl River |
Pearl River Water Resources Commission |
South-west karst, delta, typhoons |
| Songhua and Liao rivers (North-east) |
Songliao Water Resources Commission |
Snowmelt, frozen ground, rice expansion |
| Tai Lake basin |
Taihu Basin Authority |
Plain river networks, subsidence history |
| North-west inland basins |
Provincial authorities |
Oases, alluvial fans, glaciers |
| Tibetan Plateau |
Provincial authorities, CAS |
Glaciers, permafrost, snow |