Emerson MSP400RH, IP2046IM manual IP2046/IM

Page 8

3.1.3 In-tank effects

Stirrers or agitators can cause a vortex. Always try to mount the transmitter off-centre of any vortex to maximise the return echo.

As stirrer blades become uncovered they will create echoes as they pass through the ultrasonic beam. The transmitter can be tuned to ignore these false echoes on site.

In non-linear tanks with rounded or conical bottoms, always mount the transmitter off-centre. In some cases, it may be desirable to install a perforated reflector plate on the tank bottom directly under the transmitter centre line to ensure a satisfactory return echo.

Avoid mounting the transmitter directly above any pumps as the transmitter will detect the pump casing as the liquid falls away. If this is not possible, fine tuning on site may be required to ignore echoes from the pump casings.

3.1.4 Open Channel Flow installations.

There are normally two distinct parts to an open channel flow measurement system; the primary element (flow structure) and the secondary element (Head measurement instrumentation).

For accurate open channel flow measurement, both parts of the system must be installed accurately.

This manual explains some key aspects of the installation of the secondary element, in this case the ultrasonic transmitter.

For full details of the installation of a primary element such as a flume or weir, reference should be made to the relevant British (BS3680) or International standard.

In the United Kingdom, Mobrey Ltd offers a complete installation and commissioning service for

open channel flow measurement systems. For further information contact the sales office and/or refer to Mobrey’s ‘The Guide’.

Positioning of the transmitter is critical and should be the correct distance upstream from the flow structure as stated in BS3680 e.g. a distance of 4 to 5 times Hmax for a thin plate weir or 3 to 4 times Hmax for a flume.

For optimum accuracy, the front face of the transmitter should be positioned at a height that is at least equal to the maximum flow depth plus the blanking distance of the transducer. A minimum distance of 0.46m is recommended.

Hmax

Hmax + 0.46m

It is important to note that the bottom reference of the transmitter should be related to the centre of the invert of the primary device, NOT the distance to the channel bottom directly below the transmitter.

8

IP2046/IM

Nov 2006

 

Image 8
Contents Mobrey Contents Introduction Pvdf Wetside Installation IP2046/IM IP2046/IM IP2046/IM Do not USE Housing to Tighten Ptfe RL1 Spst IP2046/IM Alarm IP2046/IM IP2046/IM Selecting the units of measurement Screen display 20/4 Ullage Liquid level SPEC. P CYL.F Scale LEUEL@ max Maximum flow entry Screen display IP2046/IM IP2046/IM IP2046/IM IP2046/IM IP2046/IM Loop IP2046/IM IP2046/IM IP2046/IM IP2046/IM IP2046/IM IP2046/IM IP2046/IM Duty Appendix A1 Main Menu ProgrammingSEt20 Appendix A1Appendix A2 Diagnostics Menu LeuelLoop Appendix A3 Commissioning / Loop Test MenuEngineering Menu Appendix A4Appendix B Default Value Listing Main Menu Parameters ProFDefault Value Listing Engineering Parameters DEAdAppendix C Listing of NON-LINEAR Profiles in the MSP400 SPEC.CAppendix D Hart Communications with the MSP400 Table of MSP400 Parameters IP2046/IM IP2046/IM Instruction & maintenance leaflet