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if we have 450 mm heigth boiler drum level ,so what is span
& zero value for a dpt tranmitter

Answers were Sorted based on User's Feedback



if we have 450 mm heigth boiler drum level ,so what is span & zero value for a dpt tranmitter..

Answer / satendra

It is -450 mmwc span and 0 mmwc zero

Is This Answer Correct ?    4 Yes 2 No

if we have 450 mm heigth boiler drum level ,so what is span & zero value for a dpt tranmitter..

Answer / joe

LRV will be -225mm and URV will be +225mm then span is 450mm

Is This Answer Correct ?    1 Yes 0 No

if we have 450 mm heigth boiler drum level ,so what is span & zero value for a dpt tranmitter..

Answer / hafeez

span value is 0 mm.
zero value is -450 mm.

Is This Answer Correct ?    1 Yes 3 No

if we have 450 mm heigth boiler drum level ,so what is span & zero value for a dpt tranmitter..

Answer / sreedhar

zero will be -400mm and span will be LRV will be -400mm and
URV will be 0 mm.

Is This Answer Correct ?    8 Yes 12 No

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Q1: Consider part of a control loop, which excludes the transmitter, consisting of a process, a controller and a control valve which may be represented by two dead times of 0.5 min each and three exponential lags of 0.8 min., 1.0 min. and 1.5 min. respectively. We wish to express this system as an overall first order plus dead time (FOPLD) model ie gain, time constant and process dead time. (We will see later that this is often done, to simplify controller tuning). For this exercise, gain is considered to be 1.0. (A) If the transmitter is a flow transmitter whose behaviour can be described by a dead time of 0.2 min. and an exponential lag of 0.5 min. in terms of the overall dead time and overall first order lag how can the system behaviour be approximated ? Overall dead time = Overall time constant = (B) If the transmitter is a temperature transmitter with a temperature sensor in a protecting well whose behaviour can be described by a dead time of 0.7 min. and an exponential lag of 15 min. how can the overall system behaviour be approximated now? Overall dead time = Overall time constant =

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