IP Library › Granted Patent US 9,175,995
Granted Patent B2
US 9,175,995 · App. 14/239,823 · Granted Nov 3, 2015

Inferential coriolis mass flowmeter for determining a mass flowrate of a fluid by using algorithm derived partially from coriolis force

Inventor: Mahidzal Dahari (Kuala Lumpur, MY)
Assignee: Universiti Malaya
G01F9/001G01F1/8427G01F1/8431G01F1/8436
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Quick Facts
Patent No.
US 9,175,995
App. No.
14/239,823
Granted
Nov 3, 2015
Kind
B2
Abstract

An inferential Coriolis mass flowmeter characterized by: a power supply ( 10 ); a pressure sensor ( 11 ) connected to the power supply ( 10 ) and a tube of fluid; a current to voltage converter ( 13 ) connected to the pressure sensor ( 11 ) for converting a current signal from the pressure sensor ( 11 ) to a voltage signal; a controller unit ( 20 ) including an analogue to digital converter ( 21 ) connected to the current to voltage converter ( 13 ) for converting analogue signal from the current to voltage converter ( 13 ) to a digital signal, and a microprocessor ( 22 ) for processing the digital signal from the analogue to digital converter ( 21 ) to determine the mass flowrate of the fluid, wherein the microprocessor ( 22 ) is embedded with an algorithm to determine the mass flowrate of a fluid according to equation: y=0.002x 4 −0.0218x 3 −0.0865x 2 −0.8769x−0.0846; a display panel ( 14 ) connected to the microprocessor ( 22 ); and a transmission circuit ( 15 ) connected to the microprocessor ( 22 ).

Claims (15)

1. An inferential Coriolis mass flowmeter characterized by:

a power supply ( 10 );

a pressure sensor ( 11 ) connected to the power supply ( 10 ) and a tube of fluid for sensing the change of pressure of the fluid within the tube;

a current to voltage converter ( 13 ) connected to the pressure sensor ( 11 ) for converting a current signal from the pressure sensor ( 11 ) to a voltage signal;

a controller unit ( 20 ) including an analogue to digital converter ( 21 ) connected to the current to voltage converter ( 13 ) for converting analogue signal from the current to voltage converter ( 13 ) to a digital signal, and a microprocessor ( 22 ) for processing the digital signal from the analogue to digital converter ( 21 ) to determine the mass flowrate of the fluid, wherein said microprocessor ( 22 ) is embedded with an algorithm to determine the mass flowrate of a fluid according to equation:

y= 0.002 x 4 −0.0218 x 3 +0.0865 x 2 +0.8769 x+ 0.0846  (1)

and wherein:

y is a mass flowrate of the fluid,

x is a pressure value detected by the pressure sensor;

a display panel ( 14 ) connected to the microprocessor ( 22 ) for displaying the result processed by the microprocessor ( 22 ); and

a transmission circuit ( 15 ) connected to the microprocessor ( 22 ) for exporting the result processed by the microprocessor ( 22 ) to external devices.

2. An inferential coriolis mass flowmeter according to claim 1 , wherein the controller unit ( 20 ) is a Peripheral Interface Controller.

3. An inferential coriolis mass flowmeter according to claim 2 , wherein the Peripheral Interface Controller is reprogrammable to add variables, for example type of fluid, climate, surrounding pressure and humidity, to the algorithm.

4. An inferential coriolis mass flowmeter according to claim 1 , wherein the transmission circuit ( 15 ) is a serial communication circuit.

5. An inferential coriolis mass flowmeter according to claim 1 , wherein a regulator ( 12 ) is connected to the power supply ( 10 ) for regulating the current from the power supply ( 10 ) to the current-voltage converter ( 13 ), the controller unit ( 20 ), the display panel ( 14 ) and the communication circuit ( 15 ).

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 20, 2014
From: DAHARI, MAHIDZAL
To: UNIVERSITI MALAYA
Reel/Frame 032254/0210 →
Priority Claims (1)
MY 2011003939 · Aug 22, 2011 · national
Continuity (1)
Related Publication 20140190274A1 · Jul 10, 2014