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Пікірлер
@joshuareinke2727
@joshuareinke2727 Ай бұрын
Can you work on Pump 1 while pump 2 is operational ?
@industrialflowsolutions4555
@industrialflowsolutions4555 Ай бұрын
We offer a cover mounting closing plate in our single discharge configuration that can mount on the volute collar if you need to do maintenance to it. The integrated single discharge has a stainless-steel flapper inside of it as well, to allow for isolation. We also offer a dual discharge configuration that has a separate flange coming off each discharge volute. This will give you the ability to run one side while maintenance on the other side is performed.
@alec_foy
@alec_foy Жыл бұрын
Great video. Short and sweet, but covers all the key points! 👍
@brandonr.klrcrazy
@brandonr.klrcrazy Жыл бұрын
That is pretty impressive!
@christuey8419
@christuey8419 Жыл бұрын
Thank you for the great Video!
@chrismanganiello2792
@chrismanganiello2792 2 жыл бұрын
Those impellers, unlike anything else on the market today!
@michaelbarrett4919
@michaelbarrett4919 3 жыл бұрын
I'm interested as to how frequent start/stop of the pumps or frequent VFD modulation impact the motor temperature. Usually you would size the well to keep within a maximum number of start/stops per hour, but without that well, would these be envisioned to operate more or less continuously during the day? Also, without having the wet well storage buffer of a submersible system do you find issues with air entrainment or cavitation?
@industrialflowsolutions4555
@industrialflowsolutions4555 3 жыл бұрын
Hello Mike! Thanks for reaching out to us about the OverWatch Direct In-line Pumping system. These are all great questions. This technology solves many of the modern day troubles with traditional Wet Wells and we’re excited to talk about it. The system is not constrained by the number of starts and stops as a traditional pump system. We use soft starts and stop to reduce motor current in rush. But the magic is really in the system’s ability to use a PID algorithm to regulate flows, selecting a low frequency to keep the liquid moving when enough flow is available. In periods of low flow, the system will run between linear On/Off set points. With this control algorithm, the intent is for the system to run more frequently but consuming lower energy. By keeping the system moving, we eliminate sediment build up from FOG and Rags and well as eliminate smells. Lastly, Air entrainment or cavitation is not an issue. The system is programmed to maintain a flooded suction. In the event the detects cavitation (higher flow elevation with no torque on the motor) the system can make adjustments to performance to eliminate the cavitation. Do you have a current project in mind that we can help you with? If you have any further questions, please feel free to reach out to me directly at [email protected]. Thanks James.