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Hardware-software complex for the study of sedimentation processes in technical and biological suspensions of aggregating micro- and nanoparticles
Author(s) -
Vitaliia Baranets,
Natalya Kizilova,
О.М. Дацок
Publication year - 2019
Publication title -
vìsnik harkìvsʹkogo nacìonalʹnogo unìversitetu ìmenì v.n. karazìna. serìâ matematične modelûvannâ, ìnformacìjnì tehnologìï, avtomatizovanì sistemi upravlìnnâ
Language(s) - English
Resource type - Journals
eISSN - 2524-2601
pISSN - 2304-6201
DOI - 10.26565/2304-6201-2019-42-01
Subject(s) - centrifuge , suspension (topology) , sedimentation , settling , computer science , process (computing) , biological system , software , phase (matter) , process engineering , simulation , materials science , mathematics , chemistry , geology , engineering , physics , sediment , thermodynamics , paleontology , homotopy , biology , nuclear physics , pure mathematics , programming language , organic chemistry , operating system
A new hardware-software complex is proposed for automatic registration, processing and analysis of sedimentation curves in technical or biological suspensions of aggregating micro- or nanoparticles to assess the aging index of the industrial fluids, the state of microbiological suspensions, or medical diagnostics. The complex includes a centrifuge to create an inhomogeneous field of forces that accelerate the settling process. Registration of the sedimentation curves as the height of the column of aggregates in the lower part of the sedimentation tube is carried out using optical sensors. The curves can be taken repeatedly with or without the addition of various substances. The proposed method was tested, and the correspondence of the values ​​of the 1-hour index of erythrocyte sedimentation rate and the 10-minutes centrifuge test was confirmed on a large data set. A three-phase mathematical model of the suspension is developed. This model more accurately describes the dynamics of sedimentation processes compared to the two-phase model. Computer code for the curves processing and calculation of the indices characterizing the state of the suspension is developed. Based on this model a new index is proposed to evaluate the state of suspension. It has advantages because it does not require bringing the test samples to the same concentrations. Using the mathematical model you can determine and the rate of aggregation of suspension particles. As a result a rapid assessment of the aggregation ability of suspension which characterizes the "age" of technical suspension is possible. An example of the use of the complex to assess the indicator of aggregation of red blood cells in order to diagnose the presence of food or drug allergies is given.

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