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Nanjing Lanjiang Pump Industry Co., Ltd

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    2360963066@qq.com

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    18013944726

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    Room 302, Office Building, New Materials Industrial Park, No.1 Guoyuan Road, Xiongzhou Street, Liuhe District, Nanjing City

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The main use of anaerobic pool high thrust submersible thruster

NegotiableUpdate on 01/18
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Overview

The low-speed submersible thruster mixer features a banana shaped blade design with self-cleaning function. It is precision cast from polyurethane or aluminum alloy material and has the advantages of light weight, high strength, and corrosion resistance

Product Details

One,Low-speed submersible thruster mixer

1. Compact structure, simple operation and maintenance, easy installation and maintenance, long service life;

The hydraulic design structure of the impeller has high working efficiency, and the swept back blades have self-cleaning function, which can prevent debris entanglement and blockage;

Mixing with the aeration system can significantly reduce energy consumption, increase oxygen filling capacity, and effectively prevent sedimentation;

The insulation level of the motor winding is F, and the protection level is IP68. High quality bearings and motor anti condensation devices are selected to make the operation of the motor safer;

5 mechanical seals;

IILow-speed submersible thruster mixer

It should be able to operate continuously under the following conditions:

1. The temperature of the medium shall not exceed 40 ° C;

The pH value of the two media is between 5 and 9;

3. Liquid density not exceeding 1150kg/m3;

4. Long term diving operation, with a diving depth generally not exceeding 20m.

IIIPerformance parameters:

Under the conditions of rated voltage of 380V, frequency of 50Hz, winding insulation level of F, protection level of IP68, and working mode I.


VISelection precautions:

Selection is a complex task, and the correctness of the selection directly affects the normal use of the equipment. The principle of selection is to ensure that the mixer can fully perform its mixing function in the appropriate volume, which can generally be determined by the flow rate. According to the different process requirements of sewage treatment plants, the flow rate of the mixer should be ensured between 0.15~0.3m/s. If the flow rate is lower than 0.15m/s, the push flow mixing effect cannot be achieved. If the flow rate exceeds 0.3m/s, it will affect the process effect and cause waste. So before selecting, first determine the location where the submersible mixer will be used, such as sewage tanks, sludge tanks, and biochemical tanks; Next are the parameters of the medium, such as suspended solids content, viscosity, temperature, and pH value; Also, the shape and depth of the pool. The required matching power of the mixer is determined by the volume, density of the mixed liquid, and mixing depth, and one or more mixers are used according to the specific situation.

7、 Mixed mixing type

Determine the sludge correction factor for the medium to be mixed based on Figure B1 or Table B1.

2. Determine the tank type correction factor for the mixing tank based on Figure B2 or Table B2.

According to the required power consumption of 5 watts per cubic meter of clean water, multiply by the sludge correction factor, and then multiply by the tank type correction factor to obtain the power consumption for mixing and stirring per cubic meter

The actual value of power consumption required for mixing the medium is multiplied by the volume of the medium to be mixed to obtain the power required for the entire tank of mixed medium.

8、 Low-speed thrust flow pattern

Determine the tank type correction factor for the mixing tank based on Figure B1 or Table B1.

Determine the sludge correction factor for the medium to be mixed based on Figure B2 or Table B2.

Based on the initial flow rate y of the stirring medium, determine the power consumption per unit flow rate through Figure B3.

Calculate the flow rate of the mixer by multiplying the initial flow rate y of the stirring medium by the cross-sectional area formed by the rotation of the impeller.

Multiply the flow rate of the mixer by the power consumption per unit flow rate, and then multiply by the sludge correction factor and tank type correction factor to obtain the total amount of medium in the entire tank

Required power.