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  Hướng dẫn mua, sử dụng máy bơm công nghiệp, bơm cứu hỏa, bơm xăng dầu
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  Hướng dẫn lựa chọn Barrier tự động, bãi đỗ xe tự động
  Tư vấn, thiết kế hệ thống chữa cháy, hệ thống báo cháy tựu động, hệ thống sprinkler tự động TCVN
  Bí quyết thông thạo các điều kiện Incoterm 2010 trong thương mại quốc tế
 
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Flow-meter, Level indicator, Temp-pressure Transmitter - Website Iva Vietnam, Vietnam pump, Vietnam standards thuộc IVA VINA CO.,LTD- nhà cung cấp uy tín dẫn đầu tại Việt nam các loại máy bơm nước công nghiệp, bơm xăng dầu,Bơm chữa cháy, bơm cứu hỏa,van công nghiệp, máy nén khí, máy phát điện diesel dự phòng,đồng hồ đo lưu lượng nước, đồng hồ xăng dầu, bơm hóa chất,xăng dầu, Thiết bị phòng cháy chữa cháy, bơm dầu các loại,..,IVA VIETNAM CO.,LTD - www.buy-asthma-inhalers-online.com - website hàng đầu tư vấn, thiết kế hệ thống bơm chữa cháy, bơm cứu hỏa, thiết kế web,website rẻ nhất, lớn nhất các loại bơm chữa cháy, cứu hỏa: diesel fire pump, electric, jockey pump, tiêu chuẩn NFPA # 20, UL Listed, FM approved, imported from USA, US, G7,.
Flow-meter, Level indicator, Temp-pressure Transmitter
 Flow sensor, Flow switch, Flow transmitter, Flow Batch controller  Flow meter, Integrated Flow meter, Flow indicator for liquid/hot steam/fuel oil control
 Pressure Gauge, Vacuum gauge, Pressure switch, Pressure transducer  ;Level Indicator, Level Switch, Level transmitter, Level sensor
 Thermometer, temperature meter, Temperature switch and transmitter
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We, IVA VINA list below the flow meters available according to the different principles of measurement:
- Electromagnetic flow meter
-Volumetric flow meter
- Oval wheel litre counter, oval gear meter
- Oscillating piston litre counter
- Nutating disc litre counter
-Turbine flow meter
-Vortex flow meter 
-Mass or Coriolis flow meter 
-Ultrasonic flow meter
-Open channel flow meter
-Thermal dispersion flow meter
- Positive displacement meter

]" class="text_product">Meter, Flow-meter, flow indicator, flow control system for liquid, gas, steam, and fuel oil

 

Flow meter, meter, Flow indicator, Flow control. Flow expresses the quantity of fluid (liquid, gas or steam) that passes through a section in a unit of time. It can be

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 Coriolis meter size : DN4 to DN1000

Capacity flow : 0 - 5000 tons/hr

* offering the most accurate and repeatable mass measurement for liquids, gases, or slurries.

* Industry standard for custody transfer and critical process control

* Best two-phase flow capability for batching, loading, and entrained gas applications

* Highest immunity to fluid, process, or environmental effects for superb measurement confidence

* Specialty meters designed for high-temperature, high-pressure and corrosive applications

Available in numerous materials of construction including Super Duplex, ideal for chloride corrosion and pressures up to ANSI CL900 (2320 psi)

]" class="text_product"> Coriolis flow meter - Mass flow meter

 

Coriolis flow meter: Two parallel flow tubes inside the coriolis meter vibrate at their resonant frequency in opposite directions. Any mass flow passing through the tubes delays the vibration at the

  ]" width=120px vspace="10" border="0" align="middle"/> ]" class="text_product">Flow sensor, Flow indicator, flow transmitter, Flow switch
 

Flow switch, Flow transmitter : Iva Vietnam co.,ltd as the distributor in Vietnam offers the best thermal dispersion liquid and gas flow switch solutions for your low-flow pump and process protection

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 Applications of open channel flow meter, Ultrasonic meter,.. as :
+ Wastewater treatment plants
+ Industrial pre-treatment
+ I&I and Billing
+ Surface water and Stormwater monitoring
+ CSO and SSO
+ Full pipe monitoring

We will offer you a choice of ultrasonic, submerged probe, bubbler, and area velocity flow meters. Whether you need a permanent meter for a flume or weir, short term measurement with no primary device, or flow and pump performance monitoring at a lift station, Isco has the solution. And our application experts are available for a free, no obligation consultation to help you choose the best technology for your monitoring sites

]" class="text_product">Ultrasonic Flow meter - Open channel flow meter

 

Open channel flow meters:  How Open Channel Flowmeters Work Open channel flowmeters measure the flow of liquids that are open to the atmosphere at some point in the measurement system. The

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 The main Level gauges and their working principle are described as follows:

• Capacitive level indicators or Capacitive level transmitters
• Ultrasound level indicators or Ultrasound level transmitters
• Microwave level indicators or Microwave level transmitters
 
• Radar level transmitters
 
• Communicating vessels level indicators (visual or magnetic)
• Float level indicators
• Probe level indicators (immersed or floating)
• Vibrating level indicators
• Rotary level indicators
• Magnetic level switch
• Resistive level indicators
 
• Optical level indicators
• Conductivity level indicators
• Weight measurement levels (load cells)

Capacitive level indicators are suitable for measuring liquids even at high pressures and temperatures, and, granulated or powdery solids, that have a high and constant relative permittivity with respect to vacuum and typically air.
These
 capacitive level transmitters allow continuous indication and level conditions; they are ideal for conductive and non-conductive liquids and offer good accuracy and stability against mechanical and chemical aggression.

Ultrasound level transmitters are based on the variation of the transit (or distance or flight) time of a sound or an ultrasound caused by the raising and/or lowering of the level in the tank to be measured. The sound or ultrasound is emitted by a transmitter placed at the top of the tank and is reflected by the level of the liquid or solid product in the tank in a return echo identified by a receiver coupled with the transmitter.
Sonic level transmitters are gauges suitable for continuous indication and level conditions, ideal for liquids and powdery solids.
Ultrasound level transmitters, offer good accuracy and measurement is independent of the physical characteristics of the product : (mass density, viscosity, etc.) and by the electrical characteristics of the product; (conductivity, permittivity, etc.)

Radar is defined as an electronic system capable of locating objects that are invisible to the naked eye and to determine distance, speed, shape and dimensions, using the propagation property of radio waves.
Radar level transmitters allow non-contact measuring of liquids or solids; they are ideal for difficult measuring of pressure and temperature - measurement is independent of the physical characteristics of the product, also offering high accuracy and repeatability.

A Communicating vessels level gauge (visual) is a
 local level indicator made up of a column of liquid outside of the container to be measured; it is suitable for high pressures and temperatures, allowing local indication of the level.
Similarly, Communicating vessels level indicators, but magnetic, have advantages that make their use preferable in the following applications of fluids: high pressure, high temperature, inflammable or explosive, chemically aggressive, polluting to the environment, noxious or toxic to human beings.
Magnetic level indicators have the advantage of a local and remote indication.
With respect to the previous
 visual level indicators, instead of the measurement being read by the observer in correspondence to the liquid/gas separation surfaces, it is displayed directly by the magnetic measuring device.

Probe level measurement is automatic measuring system that periodically and/or continuously measures the level of liquids, solids, mixtures, powders, etc., in tanks, silos and containers in general.
They are called
 probe level indicators as they automatically “feel” the lowering of the material content from the top of the container and so note the height of the container, thus determining the content level.
The probe is activated by a float suspended on a cable or metal tape, by a servomotor that “senses” the floating of the float and transduces the lowering of the cable and/or tape in proportion to the raising of the level, in a series of impulses directly displayed and/or transmitted remotely.
Probe level indicators offer a local and remote indication, are suitable for medium and high pressures, ideal for great heights (also over 20 m), high accuracy (typically 1 mm).

Vibrating level indicators are suitable for indicating level conditions in liquids, powdery solids and solids in liquids.
They are composed of a probe that, when it vibrates at its natural frequency in the air, varies the vibration frequency in the presence of a liquid or solid to measure.
Vibrating level indicators can be installed vertically or laterally on the tank to be measured and do not require calibration.

The range of level gauges includes the
 rotary level indicators ideal for measuring level conditions of solids.
They are composed of a probe that is rotated by a small electric motor. The measuring probe, increasing the level, encounters greater resistance to its rotation and therefore the increase in the rotation torque is measured by an electromechanical or electronic device that indicates the level condition.
Rotary level indicators do not require calibration and offer good repeatability.

Magnetic float level switches  are ideal for checking the level of the liquid in tanks, baths, boilers and the control of pumps, valves, alarm systems.
Installation is either vertical directly into the process or laterally inserted in a housing outside the process.
A vertical tube that is closed at its lower end and integral with the fastening system, internally it has one or more magnetic contacts (up to six switching points) (Reed switch). One or more floats (free to slide along the guide tube) operate magnetically on the contacts switching their state depending on the level of the liquid in the tank.
 
The switching points are preset on construction as required but they can be adjusted in the field.
The
 magnetic and floating level switches can be fitted with a potentiometer transmitter for continuous level reading.

 

]" class="text_product">Level measuring instruments

 

 Iva Vietnam Co.,ltd is the leading supplier of level measuring instruments. We supply the best solutions for the level of liquids, solids,.. 

  ]" width=120px vspace="10" border="0" align="middle"/> ]" class="text_product">Level gauge, level indicator, level meter, level switch, level transmitter, level monitoring systems
 

Iva Vietnam is willing being the bigest supplier as well as the best distributor for worldwide famous brand names of all kind of industrial pumps, valves & controllers in Vietnam

  ]" width=120px vspace="10" border="0" align="middle"/>

 3- Vortex flow meters :

Vortex and other types of “oscillatory” flow meters utilize the behaviour fluid oscillations in order to derive flow rate. This technology works by inducing fluctuations in the fluid properties such as pressure, density or viscosity which can be converted into a flow rate.

When the fluid stream encounters a fixed obstruction, the fluid must divide to pass around the barrier. Because of viscous adhesion, the boundary layer moves slower than the outer layer. At very low flow rates, the viscous forces dominate keeping the fluid attached to the wall of the body and the fluid recombines in a symmetrical fashion. But, as the flow rates increase there comes a point where the flow cannot withstand the adhesion pressure gradient along the surface of the body and boundary layer duly separates from it to form rotating vortices that are carried downstream.

As the flow rates increase even further the vortices become relatively stable and persistent so they line up directly behind the obstruction. The vortex shedding alternates from side to side in sequence and due to the pressure pulse that accompanies the formation of the vortex from the opposite edge. By using this pressure pulse the frequency of this oscillation can be measurement and a flow rate can be derived.

4- Turbine flow meters: 
Inline ‘axial’ turbine flowmeters are velocity measuring devices - they measure the average velocity of a fluid flowing through the body of the meter. Mounted within the body of a liquid turbine flowmeter is a vaned rotor. The rotor is centred on a shaft and allowed to rotate on bearings. The shaft is supported in the housing by tube bundles that also provide a measure of flow conditioning for the fluid stream.

The rotor is made from a ferromagnetic material or contains a magnet within the hub of the rotor. Liquid flowing through the meter body engages the rotor forcing it to rotate. The rotational velocity of the rotor is proportional to the average linear velocity of the liquid flow stream. This rotational velocity is transformed into an electrical frequency signal by means of a non-intrusive sensor or coil threaded partially into the body of the meter aligned with the rotational circumference of the rotor. Being in close proximity to the ferromagnetic or magnetic rotor creates an electromagnetic coupling with the coil. The output frequency of the coil then is directly proportional to the rotational velocity of the rotor. This frequency can then be converted to a flow rate indication or scaled signal by dividing the frequency by the meter’s scaling or K-factor (e. g. pulses per gallon or pulses/litre). The K-factor is established by factory calibration of the flowmeter at the time of manufacture.

5- Positive displacement flow meters - Helical screw meter:
Positive displacement flowmeters, also known as PD meters, measure volumes of fluid flowing through by counting repeatedly the filling and discharging of known fixed volumes. A typical positive displacement flowmeter comprises a chamber that obstructs the flow. Inside the chamber, a rotating/reciprocating mechanical unit is placed to create fixed-volume discrete parcels from the passing fluid. 

The helical screw principle uses 2 counter rotating gears to form a continuous constant volume cavity. As fluid flows through the meter the screws / gears are forced to rotate. The flowrate is derived from the known volume within the cavity per revolution. In most helical screw manufacturing the gears are machined as a matched pair keeping clearances and very tight tolerances. Relatively little force is required to rotate the screws ensuring the pressure drop is kept to a minimum. As a result they can be selected for very high viscosity fluids and flow rate uncertainties are down to approx 0.1%.

6- Positive displacement flow meters - Round gear (oval gear) flow meters:
Positive displacement flowmeters, also known as PD meters, measure volumes of fluid flowing through by counting repeatedly the filling and discharging of known fixed volumes.  A typical positive displacement flowmeter comprises a chamber that obstructs the flow.  Inside the chamber, a rotating/reciprocating mechanical unit is placed to create fixed-volume discrete parcels from the passing fluid.  In the round gear meter (also called a spur gear meter) the chamber is like two intersecting circles within the body (6).  Running in the chamber are two gears (5) sensed by a pickup (1). The fluid travels around the outside turning the gears and creating a positive displacement of fluid for each pulse output.

7- Coriolis flow meters:
Two parallel flow tubes inside the coriolis meter vibrate at their resonant frequency in opposite directions. Any mass flow passing through the tubes delays the vibration at the incoming side and accelerates the vibration at the outgoing side. This causes a small time delay between both ends of the tube. This time delay is measured and is used to calculate the mass flow through the tubes.

By measuring the resonant frequency of the tubes the mass of the medium and - given a constant volume inside the tubes - the density of the medium can be calculated. As both effects are temperature dependent, the temperature is measured via a precise sensor for correcting the temperature effects of flow and density measurement.

As a consequence mass flow, density and temperature of the medium are directly measured. As the mass flow and the specific gravity are known the volume flow can be calculated.

8-Positive displacement flow meter - Rotary piston flow meter (rotary rotor flow meter) : 
Positive displacement flowmeters, also known as PD meters, measure volumes of fluid flowing through by counting repeatedly the filling and discharging of known fixed volumes.  A typical positive displacement flowmeter comprises a chamber that obstructs the flow.  Inside the chamber, a rotating/reciprocating mechanical unit is placed to create fixed-volume discrete parcels from the passing fluid.

In the rotary meters the rotor is basically a disc shape with an annular groove on its underside capable of holding and transporting flow from the chamber inlet to the outlet. Some fluid is also transported in a cavity formed between the rotor outside wall and the chamber wall. A centre 'peg' under the rotor is constrained to run in a circular groove in the body. A web (or plate) in the body is engaged with a slot in the rotor and this modifies the rotation to that of an oscillation as flow passes. It is this oscillation that produces the compartmentation of the fluid into 'positively displaced pockets'. The top of the rotor is equipped with a powerful magnet directly above the 'peg' that is on the underside and so this also has a circular path which allows it to engage and disengage a reed switch sensor located in the top cap above. A volt-free contact closure output signal is given for each oscillation which represents a volume increment. The fluid is transported in a 'positive' manner at all times. The typical metering repeatability is better than 0.2% and a meter accuracy of 1% actual reading is usually obtained over a substantial flow range. For lowest flows the meter will under-read the actual flow in a consistent manner. This allows an improved wide-range system accuracy to be gained by the use of a linearising electronics instrument.

]" class="text_product">Electromagnetic flowmeter, Ultrasonic flow meter, Mag meter, Vortex flow meter, Turbine meters, Liquids flow sensors

 

  1- Electromagnetic flow meters : Magnetic flowmeters, also known as electromagnetic flowmeters or induction flowmeters, obtain the flow velocity by measuring the changes of induced voltage of the conductive fluid passing

  ]" width=120px vspace="10" border="0" align="middle"/> ]" class="text_product">Turbine woltman water flowmeter, vortex flowmeter, magnetic water meter
 

Iva Vietnam is willing being the bigest supplier as well as the best distributor for worldwide famous brand names of all kind of industrial pumps, valves & engines in Vietnam

  ]" width=120px vspace="10" border="0" align="middle"/>

Iva Vietnam is willing being the bigest supplier as well as the best distributor for worldwide famous brand names of all kind of industrial pumps, valves & engines in Vietnam market

]" class="text_product">Pressure gauge, Thermol meter gauge, Rotameter, Vacuum gauge

 

Pressure gauge, Thermal meter gauge for Oil, Gas, Air, Chemical, Water, liquids, heavy duty high pressure, high temperature,..

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IVA VINA  CO.,LTD.

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