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Metro

Indore Metro Rail Project

MPMRCL – Indore Metro Rail Project

The Indore Metro Rail Project, developed by Madhya Pradesh Metro Rail Corporation Limited (MPMRCL), is a major urban infrastructure initiative aimed at transforming public transportation in Indore, one of Central India’s fastest-growing cities. Designed as a modern Mass Rapid Transit System (MRTS), the metro will significantly enhance urban mobility, reduce traffic congestion, and support sustainable city development.

With a network comprising elevated corridors, modern stations, and advanced operational systems, metro infrastructure requires highly reliable and efficient mechanical and plumbing systems to support daily operations. Given the high passenger footfall, continuous operation, and complex station layouts, ensuring efficient water supply, drainage, and plumbing systems is critical for maintaining hygiene, safety, and operational continuity.

Pumping systems in such transit environments play a vital role in managing water distribution, pressure boosting, and efficient plumbing operations across stations, depots, and auxiliary facilities.

Application & Pumps Used

Plumbing Systems:

  • Application: Plumbing
  • Segment: Building Services – Commercial (BSC)

Pump Solutions Supplied:

  • IE5 HYPN System


Total Pumps Installed: 10

The plumbing infrastructure across Indore Metro stations is designed to ensure consistent water availability, efficient pressure management, and optimized energy consumption. The IE5 HYPN system deployed in this project represents an advanced, high-efficiency pumping solution engineered for modern building services applications.

These systems are specifically designed to deliver variable flow and pressure based on real-time demand, ensuring optimal performance across different usage conditions within metro stations. From washrooms and utility areas to maintenance zones and staff facilities, the pumps maintain stable water pressure and reliable supply throughout the network.

A key advantage of the IE5 HYPN system lies in its ultra-high energy efficiency, aligning with the metro’s sustainability goals. By dynamically adjusting pump operation based on demand, the system reduces energy consumption, minimizes wastage, and lowers operational costs—critical factors in large-scale public infrastructure projects.