Safety you can count on: Armstrong Fluid Technology’s modular fire safety approach

Mike DeMille, Global Offering Manager, Fire Systems at Armstrong Fluid Technology discusses how to enhance protection and reduce costs with prefabricated fire safety solutions

Fire safety systems are a critical safeguard in protecting people, property and business continuity.

At the heart of these systems, fire pumps ensure a reliable water supply and adequate pressure to suppress fires when every second counts.

The performance and dependability of these pumps can make the difference between a controlled incident and catastrophic loss.

For many building owners who haven’t faced a real fire emergency, it can be difficult to see the value in the ongoing investment and maintenance of fire safety systems.

Yet safeguarding occupants doesn’t have to mean committing excessive time and resources.

Containerized fire pump systems offer a practical, efficient alternative.

These pre-engineered units deliver the critical water supply needed for automatic sprinklers and standpipe systems, serving as a vital line of defense for both people and property during emergencies.

Beyond their role in enhancing safety and operational reliability, prefabricated fire pump solutions deliver measurable savings at every stage- from streamlined logistics and simplified installation to reduced operational costs over the system’s lifespan.

The impact of manufacturing and installation

Manufactured in a controlled factory environment and housed within a standard 20ft or 40ft shipping container, these systems are delivered as complete, ready-to-use units- perfectly suited for international shipment.

Their modular, self-contained design ensures not only easy portability but also simplified maintenance, resulting in cost efficiencies across the entire supply chain.

When a project needs change, the units can be quickly removed, relocated and reinstalled, offering exceptional flexibility to meet evolving requirements.

Installation is equally efficient.

By arriving fully assembled, these units can cut installation time by as much as 95%, removing the need for complex on-site construction.

Once delivered, the pump house simply needs to be positioned and connected to the existing sprinkler network—often requiring nothing more than two pipe connections and two power hookups.

In contrast, conventional “stick-built” fire pump systems consist of multiple components sourced from different suppliers, all of which must be assembled on site.

This process can take weeks and typically demands the expertise of at least three certified tradespeople equipped with specialized tools.

It’s clear, then, why containerized fire pump solutions can deliver significant labor cost savings by streamlining both sourcing and installation.

Comparison to traditional systems

Traditional sprinkler systems involve many complex components, making on-site construction inefficient and prone to delays.

Contractors must source, handle and coordinate all materials while ensuring each part meets code and works seamlessly together—a task that often exceeds the expertise of designers and architects.

Mechanical engineering consultants and specialist sprinkler contractors are typically required to ensure all components are correctly sized and meet standards for safety, performance and quality.

Armstrong Fire Pumps ensure that pressurized water is available at sprinkler heads to suppress fires and save lives, providing a reliable backbone for these complex systems.

Fire pumps themselves offer several benefits that make them integral to a robust system: they allow flexibility in mechanical room layout, are available in a wide range of flow and head capacities and come in both electric and diesel options.

Maintenance can be performed without disturbing piping or the driver and the system can be designed without concern for large differences between minimum and maximum water pressure.

However, conventional fire pumps also have drawbacks: they require a large floor space, restrict mechanical room layout due to direction of rotation, involve more components to service and are generally more costly.

Containerized solutions overcome many of these challenges, offering compact, pre-engineered designs that maintain all operational benefits while minimizing the limitations of traditional installations.

Transforming the approach to fire protection

Ensuring proper on-site assembly of traditional fire systems requires highly skilled labour – a requirement that is often overlooked in the Middle East due to cost pressures and shortages, based on my experience with Armstrong Fluid Technology.

Yet when it comes to fire safety, quality and performance cannot be compromised.

This is why factory-built, containerized solutions are ideal.

Prefabricated units are produced using precise engineering drawings that define exact dimensions and connection points, greatly reducing the risk of human error.

When manual testing, servicing or repairs are needed, technicians benefit from convenient access via a dedicated service door.

Additionally, integrated fans and ventilation within the container create a comfortable working environment even during extended maintenance tasks.

At Armstrong Fluid Technology, we’ve seen how containerized fire pump solutions are transforming the way organizations approach fire protection.

Unlike traditional on-site builds, containerized units are fully assembled, tested and certified off-site before delivery, combining all the operational advantages of high-performance fire pumps with the efficiencies of prefabrication.

This was originally published in the December 2025 Edition of International Fire & Safety Journal. To read your FREE copy, click here.

How Armstrong’s HVAC systems help protect Egypt’s priceless artefacts

Armstrong supplies HVAC systems for Grand Egyptian Museum

Armstrong Fluid Technology has supplied a full suite of heating, ventilation and air conditioning (HVAC) pumping systems and pressurisation units for the Grand Egyptian Museum (GEM) in Cairo.

According to the company, the project was delivered in partnership with Gabtic Engineering to provide precise environmental control across the 110,000 m² complex.

Constructed by the BESIX–Orascom Construction Joint Venture, the GEM is described as the world’s largest museum dedicated to a single civilisation.

The facility’s design required systems capable of maintaining stable temperature, air quality and humidity for the long-term preservation of ancient artefacts.

Equipment supplied for precision and reliability

Armstrong said its scope of supply included Primary and Secondary Chilled Water Pumps, Condenser Water Pumps, Hot Water Primary and Secondary Pumps, and both Chilled and Hot Water Pressurisation Units.

Key equipment comprised Design Envelope Sensorless 4300 series and VIL 4300 vertical in-line pumps.

The company explained that these products combine efficient operation, reduced maintenance needs and lower energy use, while also offering compact installation across large-scale HVAC networks.

Kiran Dharwadkar, National Sales Manager in Africa, said: “Our advanced VIL/DE pump technology and Design Envelope solutions were selected for their proven reliability, energy efficiency and seamless integration into complex systems.

“These intelligent systems deliver exceptional hydraulic performance while minimizing footprint and simplifying installation across the museum’s extensive HVAC network.

“With sensorless control, built-in intelligence and minimal maintenance requirements, Armstrong’s solutions ensure consistent comfort, reduced operating costs and long-term sustainability for this landmark facility.”

Partnerships highlight engineering expertise

Qusai Abuabed, Sales Director Türkiye & MEA at Armstrong Fluid Technology, said: “The Grand Egyptian Museum represents not only a cultural milestone for Egypt but also a historic moment in Armstrong’s legacy.

“We are proud to be part of this World Heritage project, contributing our global expertise and advanced technologies to help preserve Egypt’s rich cultural legacy for future generations.”

Hussein El Alfy, CEO of Gabtic Engineering, added: “Partnering with Armstrong on the Grand Egyptian Museum was a defining moment for Gabtic.

“The project demanded uncompromising quality, precision and reliability – values that Armstrong consistently delivers.

“Together, we ensured that every system performed flawlessly to meet the expectations of one of the most significant cultural institutions in the world.”

Contribution to global HVAC innovation

Armstrong stated that its involvement in the GEM project reflects its wider role in supporting sustainable, intelligent HVAC systems for critical infrastructure projects worldwide.

The company said the project demonstrates how its engineered solutions can provide energy-efficient performance while meeting the environmental requirements of sensitive cultural and heritage environments.

Relevance for fire and safety professionals

The Grand Egyptian Museum project demonstrates the integration of advanced HVAC systems in high-value facilities where environmental stability is essential for preservation and safety.

For building services engineers and facility managers, Armstrong’s sensorless pump control and pressurisation systems show how precise environmental regulation can protect both human occupants and vulnerable materials.

Mechanical and electrical engineers may note the relevance of these systems for controlling humidity and airflow in large, enclosed public venues where fire safety and air quality overlap.

The project also offers insights for procurement teams evaluating energy-efficient HVAC solutions in cultural, educational or heritage infrastructure with strict environmental requirements.