Non-invasive measurements of multiphase flows have several important applications in industry. In this paper we present a method that uses pulsed ultrasound and two small receivers to determine the mass concentration of iron ore particles in water. The proposed method is based on the assumption that when ultrasound is transmitted through a scattering medium, the shape of the energy lobe changes. In this paper we use two receivers to monitor how the lobe changes. We show with experiments how the proposed method can be used to determine particle mass fractions from 3 percent and up, with an accuracy of ±1 percent of the mass fraction. In the experiments we used a 3 MHz transmitter and two receivers, one along the acoustical axis and the other...
In many industrial applications, non-invasive measurements of different flows play an important ...
This paper presents an ultrasonic pulse-echo technique for on-line monitoring of variations in solid...
In this paper we present a simple theoretical model of how pulsed ultrasound is attenuated by the pa...
Non-invasive measurements of multiphase flows have several important applications in industry. In th...
Non-invasive measurements of multiphase flows have several important applications in industry. In th...
Non-invasive measurements of multiphase flows have several important applications in industry. In th...
In process industries such as for example the oil and gas industry, the paper pulp industry, and the...
In process industries such as for example the oil and gas industry, the paper pulp industry, and the...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In many industrial applications, non-invasive measurements of different flows play an important ...
In many industrial applications, non-invasive measurements of different flows play an important ...
In many industrial applications, non-invasive measurements of different flows play an important ...
This paper presents an ultrasonic pulse-echo technique for on-line monitoring of variations in solid...
In this paper we present a simple theoretical model of how pulsed ultrasound is attenuated by the pa...
Non-invasive measurements of multiphase flows have several important applications in industry. In th...
Non-invasive measurements of multiphase flows have several important applications in industry. In th...
Non-invasive measurements of multiphase flows have several important applications in industry. In th...
In process industries such as for example the oil and gas industry, the paper pulp industry, and the...
In process industries such as for example the oil and gas industry, the paper pulp industry, and the...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In this paper we present a method for the measurement of mass fractions of iron ore in two-phase flo...
In many industrial applications, non-invasive measurements of different flows play an important ...
In many industrial applications, non-invasive measurements of different flows play an important ...
In many industrial applications, non-invasive measurements of different flows play an important ...
This paper presents an ultrasonic pulse-echo technique for on-line monitoring of variations in solid...
In this paper we present a simple theoretical model of how pulsed ultrasound is attenuated by the pa...