Engineering legacy · 1995–Present

HARE Irrigation Project

Preserving an important engineering work, honouring the professionals who created it, and revisiting the project through modern hydrology, GIS, DEM analysis, watershed modelling and water-resources engineering.

Why HARE matters

A project, a generation of engineers, and a living technical archive

1995 Engineering Study

The original HARE Irrigation Project Design Report is preserved as a record of engineering education, teamwork and applied irrigation design.

Professional Legacy

The site documents how the four original team members developed into experienced professionals across hydrology, irrigation, dams, water leadership, water supply and sanitation.

Modern Reassessment

The original work is now being reassessed using modern DEM products, GIS, satellite information, rainfall analysis, HEC-HMS event modelling, SWAT continuous watershed simulation and updated engineering interpretation.

HARE Revisited · Hydrological models

From catchment reconstruction to modern modelling

The modern reassessment has progressed beyond mapping and data preparation into detailed hydrological and watershed modelling. HEC-HMS and SWAT are used for different but complementary engineering purposes.

HEC-HMS

Design-flood analysis completed
114.4 m³/s

Event-based rainfall-runoff modelling has been completed for the Hare diversion weir. The present 50-year HEC-HMS simulation gives a design-event outlet peak of 114.4 m³/s.

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SWAT

Two simulations completed
17 subbasins · 161.95 km²

Watershed delineation, HRUs, NASA POWER climate preparation and two continuous SWAT simulations have been completed. The present interpretation covers water balance, streamflow, groundwater, erosion and sediment.

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Sediment Assessment

Active engineering interpretation
58.4 Mg/ha

The current SWAT reference run indicates an average upland sediment yield of approximately 58.4 Mg/ha and a strong simulated tendency toward in-stream deposition. Present field photographs of the Hare diversion also show substantial gravel, sand and finer sediment accumulation.

View SWAT results →
Open Hydrological & Watershed Models Modelling Roadmap

The original HARE team

Four engineers, four distinct professional journeys

Eng. Mesfin Hagos Tewolde

Irrigation Engineer · Hydrologist · Civil Engineer

Hydrology, research, modelling, GIS and water knowledge innovation.

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Dr. Eng. Mitiku Bedru Gochefo

Hydraulic Engineer · Irrigation Specialist · Water Resources Leader

Engineering, institutional leadership, water policy and international cooperation.

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Eng. Seid Shimelis

Irrigation & Water Resources Engineer

Dam and irrigation design, headworks, major projects and senior technical leadership.

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Eng. Tamir Mitiku Habeteyes

Hydraulic & Hydropower Engineer · Water & Sanitation Specialist

Irrigation, water supply, sanitation and the engineered water cycle.

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The book

From the original report to a professional publication

The HARE book preserves the original engineering study while revisiting calculations, assumptions, hydrological methods, irrigation requirements, drainage, canal systems, hydraulic structures, watershed modelling, sediment behaviour, figures, tables and technical explanations.

Book page

Maps & technical products

HARE through modern spatial analysis

The mapping section documents watershed boundaries, DEM, hillshade, slope, drainage, flow accumulation, command area, canals, headworks, land cover, soils and other GIS products developed during the modern reconstruction.

Maps & DEM

Current engineering direction

From watershed processes to headworks reassessment

The modern study now links rainfall, catchment characteristics, river flow, erosion and sediment behaviour with the condition of the existing Hare diversion works.

Hydrology

HEC-HMS provides the event-based design-flood framework, while SWAT provides continuous watershed response, water balance, groundwater contribution and daily streamflow information.

Sediment

SWAT identifies important sediment-source areas and strong channel deposition. Field photographs independently show substantial sediment accumulation around the Hare diversion structure.

Headworks

The next engineering stage considers sediment exclusion, scour and undersluice arrangements, flushing, intake alignment, desilting and catchment erosion-control measures.

Open Hydrological Models

Long-term vision

An internationally accessible engineering legacy

The HARE website is being developed as a permanent professional archive for engineers, students, universities, water institutions, governments, researchers and development partners interested in irrigation and water-resources engineering.

By bringing together the original 1995 engineering study, Team1995 professional history, GIS reconstruction, HEC-HMS, SWAT, field evidence and modern engineering interpretation, the archive documents both the history of the project and its continuing technical relevance.