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Determination of CD,CV and CC Orifices
Determination of CD,CV and CC Orifices

Determination of CD,CV and CC Orifices

Price 10 INR/ Piece

MOQ : 1 Piece

Determination of CD,CV and CC Orifices Specification

  • Measurement Range
  • Flow rate up to 10 LPM (Litres Per Minute)
  • Power Source
  • Electric
  • Voltage
  • 230 V AC
  • Core Components
  • Orifice Test Section, Differential Manometer, Collecting Tank, Sump Tank, Pump, Measuring Scale
  • Feature
  • Demonstration of Discharge and Coefficient Measurements
  • Automation Grade
  • Manual
  • Accuracy
  • 1% of Full Scale
  • Product Type
  • Determination of CD,CV and CC Orifices
  • Frequency
  • 50 Hz
  • Temperature Range
  • Ambient
  • Application
  • Hydraulic Fluid Mechanic Lab Equipments
  • Usage
  • Hydraulic Fluid Mechanic Lab Equipments
  • Model No
  • TQ/CDCV-ORF-01
  • Equipment Materials
  • Mild Steel, Stainless Steel, Acrylic, Brass (as per contact with fluid)
  • Type
  • Hydraulic Fluid Mechanic Lab Equipment
  • Display Type
  • Analog/Scale Graduated
  • Dimension (L*W*H)
  • Approx. 900mm x 450mm x 1200mm
  • Weight
  • Approx. 25-35 kg (varies by setup)
 

Determination of CD,CV and CC Orifices Trade Information

  • Minimum Order Quantity
  • 1 Piece
  • Sample Available
  • Yes
  • Sample Policy
  • Sample costs shipping and taxes has to be paid by the buyer
  • Packaging Details
  • carton box, export quality also available
  • Main Export Market(s)
  • Asia, Middle East, Africa
  • Main Domestic Market
  • All India
  • Certifications
  • ISO 9001, 14001 ,CE
 

About Determination of CD,CV and CC Orifices

Determination of CD,CV & CC Orifices Complete with all Accessories:

Micro Teknik (a) Determination of CD,CV & CC Orifices Apparatus
(b) Stand for the Apparatus
(c) Scale & Sliding Attachment
(d) Collecting Tank

Overhead tank 45x45x120 cms high is strongly made in steel sheet and angle iron frame with separating pipe, gauge glass and scale graduated In cms and litres, drain cock and overflow. The tank has quick action valve in front having a facing to take the follow interchangeable orifices which are included with the apparatus. Four orifices sharp edged-round, square, rectangular and rectangular and four mouth pieces, convergent, divergen 111 form and re-entrant.


(b) Stand for above made of angle Iron and Iron strips stror4l; made.


(c) Scale and Sliding Attachment For measuring the curved the out flowing jet. Horizontal and vertical scales are accurate to 1 mm with vernier reading to 1/10 mm. Complete with fix arrangements to the overhead tank.

(d) Collecting tank For above, size 8OX80x90 cm in strong steel sheet and angle iron frame work. Complete with a glass gauge and scale calibrated In cms and litres and also a quick drain cock.


(e) Collecting Tank Size 80x80x90 cm In strong steel sheet and angle iron frame work divided Into two water light com partments each having a gauge glass and scale calibrated , cms and litres and also a quick drain cock.

 



Robust Construction and Safety Features

Fabricated from high-quality mild steel, stainless steel, acrylic, and brass, the equipment offers longevity and resilience, particularly in educational and research environments. A powder-coated finish and corrosion-resistant paint safeguard against wear, while an overload protector ensures pump safety, minimizing operational risks during experimental procedures.


Versatile Measurement System for Hydraulic Studies

Equipped with interchangeable orifices and both mercury and water manometer options, the device provides flexible measurement capabilities. The analog scale facilitates clear visibility of flow rates and physical parameters. This ensures detailed analysis of hydraulic discharge and coefficient calculations across various fluid scenarios and configurations.

FAQs of Determination of CD,CV and CC Orifices:


Q: How does this equipment determine the coefficients CD, CV, and CC for different orifices?

A: The device measures the flow characteristics by pumping fluid through interchangeable orifices and capturing data via a differential manometer and graduated scale. The calculated discharge, velocity, and contraction coefficients (CD, CV, CC) are derived from observed readings against theoretical values using the provided operation manuals methodology.

Q: What is the process for controlling flow during experiments?

A: Flow is adjusted manually using the incorporated diaphragm valve. This precise control enables the user to achieve desired flow rates (up to 10 LPM), crucial for obtaining accurate coefficient measurements during laboratory experiments.

Q: When should the mercury or water manometer fluid be used in testing?

A: The choice between mercury or water as the manometer fluid depends on the model variation and the required sensitivity for the experiment. Mercury offers higher sensitivity for low-pressure measurements, while water is used for standard applications.

Q: Where is this equipment typically installed and operated?

A: The setup is designed for both table top and standalone installations in hydraulic laboratory settings, usually in academic or industrial research facilities focusing on fluid mechanics and hydraulics studies.

Q: What are the benefits of using interchangeable orifices for experiments?

A: Interchangeable orifices allow for varied experiments with different flow patterns and pressure drops. This flexibility enables comprehensive analysis of how orifice geometry influences hydraulic coefficients, enhancing understanding and proficiency in fluid mechanics.

Q: How does the overload protector enhance safety during operation?

A: The overload protector automatically shuts off the pump if excessive load is detected, preventing equipment damage and ensuring safe, uninterrupted laboratory usage.

Q: What materials are used in the construction of wetted components and why?

A: Mild steel, stainless steel, acrylic, and brass are selected for components contacting the fluid due to their durability, corrosion resistance, and compatibility with various liquids used in hydraulics laboratories.

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