⁦Infrastructure profile⁩⁦Active⁩

⁦Karkheh Dam⁩

⁦Construction began in 1991 and was completed in 2001⁩. ⁦The dam began operating in 2002 and serves water-management⁩, ⁦irrigation⁩, ⁦flood-control and hydropower functions⁩. ⁦Its 400 MW power plant has reported average annual generation of 934 GWh⁩, ⁦although actual generation is sensitive to hydrological conditions⁩.

⁦Status⁩⁦Active⁩
⁦Verification⁩⁦Basic⁩
⁦Confidence⁩⁦High⁩
⁦Updated⁩19/07/2026
⁦Strategic Layer⁩

⁦Strategic and market-access role⁩

⁦Karkheh Dam is a high-relevance water and power asset in the Hormuz Graph because it regulates one of Khuzestan’s major river systems⁩, ⁦linking hydropower⁩, ⁦irrigation⁩, ⁦flood control⁩, ⁦agricultural production⁩, ⁦and public water security⁩. ⁦Its role is distinct from Karun-system dams because it affects western Khuzestan’s farming zones⁩, ⁦downstream settlements⁩, ⁦and environmental stress around the Karkheh basin⁩. ⁦The asset connects water allocation⁩, ⁦electricity generation⁩, ⁦rural productivity⁩, ⁦urban resilience⁩, ⁦and public infrastructure risk in a province where water conditions directly shape industrial and social stability⁩.

⁦OPERATING PROFILE⁩

⁦Operations⁩, ⁦capacity⁩ &⁦amp⁩; ⁦connectivity⁩

⁦Related use cases⁩

⁦Useful for water-risk assessment⁩, ⁦hydropower context analysis⁩, ⁦agricultural supply-chain screening⁩, ⁦public-project monitoring⁩, ⁦environmental-risk review⁩, ⁦and site-risk evaluation in western Khuzestan⁩. ⁦Analysts can use it to assess how river-basin management affects farming⁩, ⁦urban services⁩, ⁦industrial resilience⁩, ⁦and regional logistics⁩. ⁦Practical evaluation should verify current water levels⁩, ⁦allocation rules⁩, ⁦grid contribution⁩, ⁦drought exposure⁩, ⁦downstream impacts⁩, ⁦and public-sector procurement pathways⁩.

⁦Capacity and service area⁩

⁦Capacity⁩: ⁦The hydroelectric plant has 400 MW of installed capacity across three units⁩. ⁦Maximum reservoir capacity is 7.3 billion m⁩³. ⁦The scheme was designed to irrigate 320⁩,000 ⁦hectares⁩. ⁦Service area⁩: ⁦The Karkheh River basin and agricultural areas served by the dam’s irrigation system in Khuzestan⁩.

⁦Industries served⁩

⁦Power generation⁩, ⁦water management and irrigated agriculture⁩.

⁦CONTROL⁩ &⁦amp⁩; ⁦DEVELOPMENT⁩

⁦Ownership⁩, ⁦operation⁩ &⁦amp⁩; ⁦expansion⁩

⁦Owner and operator⁩

⁦Owner⁩: ⁦Iran Water and Power Resources Development Company⁩ (⁦IWPC⁩), ⁦affiliated with Iran’s Ministry of Energy⁩. ⁦Operator⁩: ⁦Iran Water and Power Resources Development Company⁩ (⁦IWPC⁩).

⁦Opening or commissioning⁩

2002; ⁦the first hydroelectric generating unit was commissioned in September 2002⁩.

⁦DECISION RISKS⁩

⁦Constraints⁩, ⁦risk⁩ &⁦amp⁩; ⁦compliance⁩

⁦Operational constraints⁩

⁦Hydroelectric output depends on reservoir water availability⁩. ⁦In May 2024⁩, ⁦reports cited reservoir storage of about 1 billion m⁩³, ⁦around 40 metres below the natural operating level⁩, ⁦and said the plant’s units had been taken out of service⁩.

⁦Key risks and compliance considerations⁩

⁦Drought and water scarcity can constrain both hydropower generation and agricultural water supply⁩. ⁦Reduced river flows also present environmental stress in the Karkheh basin⁩.

⁦Related context⁩

⁦Connected Intelligence⁩

⁦Relevant geography⁩, ⁦industry⁩, ⁦market and execution context for this profile⁩.

⁦Common questions⁩

⁦Frequently asked questions⁩

⁦Direct answers to the questions most likely to arise when reviewing this profile⁩.

⁦What is Karkheh Dam used for⁩?

⁦Karkheh Dam supports regional water management⁩, ⁦agricultural irrigation⁩, ⁦flood control and hydroelectric generation on the Karkheh River⁩.

⁦What is the installed capacity of Karkheh Dam’s power plant⁩?

⁦The hydroelectric plant has reported installed capacity of 400 MW across three generating units⁩.

⁦When did Karkheh Dam begin operating⁩?

⁦The dam began operating in 2002⁩. ⁦The first hydroelectric generating unit was commissioned in September 2002⁩.

⁦What has constrained Karkheh Dam’s hydropower output⁩?

⁦Low reservoir water levels have constrained generation⁩. ⁦In May 2024⁩, ⁦reports said the plant’s units were taken out of service amid significantly reduced reservoir storage⁩.