Flowmeter Validation Method for Pipes with Scaling in an Industrial Water Pumping Station for Mineral Processing in Los Pelambres Mine, Chile, Through Fluorescent and Radioactive Tracers

Canadian Institute of Mining, Metallurgy and Petroleum
F. Diaz O. Jimenez A. Diaz G. Leinenweber D. Rojas Minera Los Pelambres R. Bernal C. G. Salinas
Organization:
Canadian Institute of Mining, Metallurgy and Petroleum
Pages:
7
File Size:
1544 KB
Publication Date:
Jan 1, 2016

Abstract

"Los Pelambres Mine (MLP) is located in the IV Region of Chile, a semi-arid region where water plays a key role in operations as a scarce resource and is vital for the sustainability of human life, animals and ecosystem. The conventional flow meters installed on pipes at MLP can fail to provide an accurate measurement due to corrosion and/or fouling on the inner wall or presence of elements in the water such as acids, salts and suspended solids. Conventional flow measurement methods require the inner diameter to be known, however it is not always possible to assess its real value due to scaling, fouling, corrosion, etc. Here we present a novel methodology to solve these problems, which consists of the measurement of flow by a method that does not require the internal area of the pipes: the fluorescent tracer dilution method. In addition, the fluid velocity can be determined by the transit time of a radioactive tracer method. With the flow rate and velocity, the equivalent area is determined and thus the equivalent internal pipe diameter as well. This methodology was applied in a recirculation pump station, for mineral processing from the El Mauro tailings dam.This work demonstrated adequate correlation between measurements from fluorescent tracers and velocity measurements from radioactive tracers, both of which lead to the assessment of the internal diameter of pipes with scaling. The results of both methods disagree with the data provided by the flowmeter installed on the line due to its miscalibration. This information is useful in validating and correcting the information provided by online flowmeters of all water and solutions transport processes in filled pipes.INTRODUCTIONPresently, the need to optimize water resources is increasingly ever important, due to various reasons such as water scarcity, community empowerment, an increased use of water for mining processes and environmental considerations. Taking into account those main considerations, Los Pelambres Mine decided to focus on water conservation to avoid losses of this vital element. They decided to demonstrate that all of the systems that used water (flow meters, pipes, pumping stations, lagoons, etc) were in good condition and that no evitable loses of this important resource occurred. A plan was proposed to conduct a “hydraulic assessment” of fluid flux and water speed at different points and courses at the mine, with the purpose of obtaining hard data to support, verify and correct the information provided online from specific instrumentation dedicated to those purposes. The final goal was to manage the water resource basin in a sustainable way, based on cross-checked information. The chosen points are representative of the processes present in the mine, such as recirculating water stations at different operating conditions and surface water courses, where the fresh water capture systems operate."
Citation

APA: F. Diaz O. Jimenez A. Diaz G. Leinenweber D. Rojas Minera Los Pelambres R. Bernal C. G. Salinas  (2016)  Flowmeter Validation Method for Pipes with Scaling in an Industrial Water Pumping Station for Mineral Processing in Los Pelambres Mine, Chile, Through Fluorescent and Radioactive Tracers

MLA: F. Diaz O. Jimenez A. Diaz G. Leinenweber D. Rojas Minera Los Pelambres R. Bernal C. G. Salinas Flowmeter Validation Method for Pipes with Scaling in an Industrial Water Pumping Station for Mineral Processing in Los Pelambres Mine, Chile, Through Fluorescent and Radioactive Tracers. Canadian Institute of Mining, Metallurgy and Petroleum, 2016.

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