Weld-On Cone Strainers

SIMFLO Weld-On Cone Strainers prevent debris from entering the pump suction in deep-set applications, offering durable protection and reliable performance across agricultural, municipal, commercial, and industrial markets. Our expert teams can assist with proper strainer selection to meet Hydraulic Institute Standards, including required clearances to avoid sediment intake.

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Bolt-On Basket Strainers
Threaded Basket Strainers
Threaded Cone Strainers
Bowl Assemblies

Booster Cans

SIMFLO Booster Cans are self-contained pressure vessels, engineered per Hydraulic Institute (HI) Standards, for vertical turbine pumps to ensure optimal performance. Booster cans offer a smaller footprint in open or closed loop systems, making them an ideal solution for boosting pressure in industrial, agricultural, and municipal applications.

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Canned Booster Vertical Turbine Pumps

Reverse Flow Friction Testing

SIMFLO provides locked rotor reverse flow friction testing to establish pressure loss curves for bowl assemblies used in Aquifer Storage and Recovery (ASR) wells. This test supports applications where the bowl serves as a flow restriction device, replacing a dedicated valve, to control recharge flow and prevent damage to the well casing and surrounding strata. The results help define appropriate safe recharge parameters.

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Hydraulic Performance Testing
Vertical NPSH Testing
SIMFLO Testing

Net Positive Suction Head Testing

SIMFLO provides specialized Net Positive Suction Head (NPSH) testing for vertical turbine pumps to identify their cavitation point. This testing assesses suction capability under varying flow conditions, helping identify design, installation, or operational issues. By confirming the pump operates within safe NPSH limits, SIMFLO helps boost efficiency, minimize downtime, and extend pump life—ensuring your system runs reliably and at peak performance.

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Hydraulic Performance Testing
Reverse Flow Friction Testing
SIMFLO Testing

Hydraulic Performance Testing

SIMFLO Hydraulic Performance Testing ensures vertical turbine pumps operate at peak efficiency and meet performance requirements. Our state-of-the-art facilities replicate real-world conditions to evaluate flow, head, and efficiency across various operating points. This testing identifies issues, verifies compliance with standards, and optimizes performance—improving reliability, reducing energy use, and lowering maintenance costs. With SIMFLO, you can trust your pump system to deliver consistent, high-performance results.

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Hydraulic Design
NPSH Testing
Reverse Flow Friction Testing
SIMFLO Testing

Lateral and Torsional Rotor Dynamic Analysis

SIMFLO provides advanced Lateral and Torsional Rotor Dynamic Analysis to enhance the performance and reliability of vertical turbine pump systems. By evaluating rotor behavior under various conditions, we identify resonances, misalignments, and vibrations that can cause wear or failure. This early analysis ensures smooth, efficient operation and long-term reliability.

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Finite Element Analysis

SIMFLO uses advanced finite element analysis (FEA) to ensure the structural integrity and performance of vertical turbine pump systems. By simulating real-world stresses and deformations, we optimize designs for strength and durability—identifying potential issues before they arise. FEA helps refine material choices and enhance component reliability, ensuring your system meets the highest performance and safety standards, whether for new designs or upgrades.

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Hydraulic Design
Computational Fluid Dynamics Analysis
Lateral and Torsional Rotor Dynamic Analysis
3D Solid Modeling

Computational Fluid Dynamics Analysis

SIMFLO utilizes advanced Computational Fluid Dynamics (CFD) to optimize the design and performance of vertical turbine pump systems. Through detailed simulations of fluid flow and pressure, we fine-tune pump components and configurations for maximum efficiency, reduced turbulence, and improved energy use. By identifying issues early, CFD minimizes downtime, maintenance, and operational costs—ensuring reliable, high-performance results tailored to your application.

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Hydraulic Design
Finite Element Analysis
Lateral and Torsional Rotor Dynamic Analysis
3D Solid Modeling