When it comes to heavy-duty water pumping, V6 Submersible Pumps are one of the most reliable choices. Available in radial flow and mix flow designs, these pumps cater to different water lifting needs. Choosing the right pump depends on your borewell size, water table depth, and application. Let’s explore the differences and benefits of both.

V6 pumps are designed for 6-inch borewells and can handle high water discharge. They are widely used in agriculture, industrial operations, and commercial complexes.

Radial Flow Pumps – Features & Benefits

  • Suitable for deeper borewells.
  • Provide higher head (greater vertical lift).
  • Best for irrigation where water needs to be lifted long distances.
  • Example: V6 Radial Flow 40 Feet / 50 Feet S.S. Pump.

Mix Flow Pumps – Features & Benefits

  • Provide higher discharge (more water volume).
  • Ideal for shallow borewells with medium head requirements.
  • Cost-effective and highly efficient.
  • Example: V6 Mix Flow 40 Feet / V6 to V7 333 Type Mix Flow.

Applications of V6 Pumps

  • Agriculture: Irrigation of large farms.
  • Industrial: Cooling systems, process plants.
  • Commercial: Apartments, hospitals, hotels.

Choosing the Right Pump – Radial or Mix Flow?

  • If your borewell is deep → Choose Radial Flow.
  • If you need more water discharge at lower head → Choose Mix Flow.
  • Always match pump specs with your required head and discharge rate.

FAQs

Q1. Which is more energy-efficient – radial or mix flow?
A) Both are efficient, but mix flow pumps deliver more water per kW consumed.

Q2. Can I use V6 pumps for continuous 24/7 operation?
A) Yes, if properly maintained with correct motor capacity.

Q3. Do V6 pumps work in sandy borewells?
A) Stainless steel models are more durable for sandy conditions.

Conclusion

V6 Submersible Pumps offer powerful solutions for water lifting. Radial flow pumps are best for high-head applications, while mix flow pumps suit high-discharge needs. Understanding these differences ensures you pick the right pump for long-term efficiency.