EP0805959A1

Method for determination of flow rate in a fluid

Abstract

PCT No. PCT/NO95/00211 Sec. 371 Date Jul. 8, 1997 Sec. 102(e) Date Jul. 8, 1997 PCT Filed Nov. 9, 1995 PCT Pub. No. WO96/15427 PCT Pub. Date May 23, 1996A method for measuring the flow rate in a fluid flow, particularly a two-phase flow comprising oil, water and gas from an offshore well, in which a temporary transitory shut-off of the fluid flow by means of a valve is performed, and the fluid pressure at a location immediately upstream of the valve is recorded from a moment of time when the valve starts closing to a selected moment of time after the valve is fully closed. Subsequently, the valve is opened to reestablish the fluid flow, and the fluid mass flux G is determined as a function of fluid density, friction factor, pipe diameter, selected moment of time after closure of the valve, friction loss recorded at the selected moment after closure and a pressure surge pressure.

Term

Term ended

Projected expiry passed 9 November 2015, 10.9 years ago.

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4 claims: 2 independent, 2 dependent

  1. 1
    Claims of equivalent WO 9615427 A1 Claims 1. Method for measuring the flow rats in a fluid flow (30), particularly a two-phase flow comprising oil, water and gas from a development well offshore, characterized in:performing a temporary transistory shut-off of the fluid flow by means of a valve (33), and recording the fluid pressure at a location (37) immediately upstream of the valve (33) from a moment of time when the valve starts closing to a selected moment of time afier the valve is fully closed, and opening the valve to re-establish the fluid flow, and determining the fluid mass flux G according to the ratio G = ft' 4 d Pa where p = fluid density, f = friction factor, d = pipe diameter, t* = a selected moment of time after closure of the valve, Δp*f is friction loss recorded at time t* and Δp, is pressure surge pressure represented by recorded pressure increase at the moment the valve is fully closed.
  2. 4
    Method for measuring the flow rate of a fluid flow (40) comprising as least two phases, by means of pressure sensors (45,46) downstream and pressure sensors (47,48) upstream of a pulse generating means (43), c h a r a c t e r i z e d in using a quick-closing valve as said pulse generating means (43), and changing the valve (43) position from substantially open to fully closed, recording the fluid pressure by the pressure sensors (47,48) and (45,46) from a time when the valve starts closing to a selected moments time after the valve is fully closed, and then opening the valve to re-establish the fluid flow, determining the fluid flow velocity and specific acoustic velocity according to the ratio a = (uu + uo) (9> where uN is the pressure pulse propagation velocity downstream and u0 is the pressure pulse propagation velocity upstream, and providing the fluid flow velocity u from the formula u •*■**■ 0.5 • (uN-u0) or by substra ting the fluid specific acoustic velocity a from the measured pulse propagation velocity :u = uN - a, and determining the fluid density p according to the ratio Lpa = p- a Αu (2) where Δu is the change of fluid velocity, a is the velocity of acoustic pulse propagation in the fluid, thus determining the fluid flow rate G according to the equation G = p* u (1) where u is the fluid flow rate immediately before the valve starts closing.