
Table Of Content
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Introduction to Horizontal Split Case Pumps
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Design and Construction
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Key Features of Horizontal Split Case Pumps
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Applications in Industry and Infrastructure
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Product Range: LS and LSV Models
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Technical Specifications
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Advantages of Choosing Mohamed Harb Company Pumps
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Installation and Maintenance
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Comparison with Other Pump Types
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Conclusion
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Internal Links
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External Resources
Introduction to Horizontal Split Case Pumps
Horizontal split case pumps are advanced pumping solutions designed for durability, efficiency, and reliability. At Mohamed Harb Company, we provide premium horizontal split case pumps that are widely used in water supply networks, industrial facilities, HVAC, and district cooling systems.
These pumps are known for their robust construction, high hydraulic efficiency, and low operational noise, making them ideal for both commercial and municipal water projects.
Design and Construction
The horizontal split case design features a pump housing divided axially into two parts. This allows:
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Easy inspection and maintenance without dismantling the motor.
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Extended service life due to heavy-duty construction.
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Smooth operation with reduced vibration and noise.
Key Features of Horizontal Split Case Pumps
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High efficiency: Optimized impeller and volute design for energy savings.
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Low noise levels: Ideal for buildings and urban installations.
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Ease of servicing: Axial split casing ensures quick access to internal components.
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Wide flow range: Up to 9491 m³/h, covering diverse project needs.
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Strong pressure handling: Max. head of 238 m and operating pressure up to 25 bar.
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Versatile liquid handling: Suitable for temperatures between 0°C and 120°C.
Applications in Industry and Infrastructure
🔹 Public Water Supply
These pumps play a vital role in municipal water distribution, ensuring reliable and consistent pressure across large networks.
🔹 District Cooling
Used in urban cooling systems, horizontal split case pumps efficiently circulate chilled water across large facilities, supporting sustainable city development.
🔹 HVAC Systems
In heating, ventilation, and air conditioning, these pumps maintain optimum flow and pressure, ensuring energy efficiency in high-rise buildings and commercial complexes.
🔹 Industrial Operations
Industries rely on these pumps for process cooling, boiler feed, and water transfer applications, where performance and reliability are critical.
Product Range: LS and LSV Models
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LS Horizontal Split Case Pump: Single-stage or two-stage centrifugal volute pump with robust design, ideal for horizontal installations.
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LSV Vertical Split Case Pump: A vertical configuration offering space-saving design with the same performance standards.
Both are non-self-priming pumps designed for heavy-duty, continuous operation.
Technical Specifications
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Liquid Temperature: 0 .. 120 °C
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Max. Flow: 9491 m³/h
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Max. Head: 238 m
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Max. Operating Pressure: 25 bar
These parameters make Mohamed Harb Company’s pumps suitable for large-scale water supply projects and industrial-grade systems.
Advantages of Choosing Mohamed Harb Company Pumps
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Trusted supplier of high-performance pumping solutions.
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Customized solutions tailored to industrial, municipal, and commercial needs.
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Technical expertise and after-sales service for long-term reliability.
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Proven efficiency, reducing operational costs and downtime.
Installation and Maintenance
The axial split design simplifies both installation and servicing:
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Maintenance can be performed without removing the motor or pipework.
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Extended intervals between servicing due to durable components.
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Optimized alignment ensures smooth operation and less wear.
Comparison with Other Pump Types
Unlike end-suction pumps, horizontal split case pumps handle higher flow capacities with greater efficiency. They are also more reliable for long continuous operations, making them the preferred choice for municipal projects and industrial cooling systems.
Conclusion
Horizontal split case pumps represent a perfect balance between efficiency, durability, and performance. Mohamed Harb Company proudly delivers world-class LS and LSV models, ensuring sustainable water management for cities, industries, and large-scale infrastructure projects.