Optimizing Energy Efficiency of Dielectric Materials’ Electrodischarge Dispersion as One Sustainable Development Green Trend

Author:

Malyushevskaya Antonina1ORCID,Petrychenko Serhii1,Przystupa Krzysztof2ORCID,Mitryasova Olena3ORCID,Majka Michał4ORCID,Kochan Orest56ORCID

Affiliation:

1. Institute of Pulse Processes and Technologies, 54018 Mykolaiv, Ukraine

2. Department of Automation, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland

3. Ecology Department, Petro Mohyla Black Sea National University, 54003 Mykolaiv, Ukraine

4. Department of Electrical Equipment and High Voltage Techniques, Lublin University of Technology, Nadbystrzycka 36, 20-618 Lublin, Poland

5. School of Computer Science, Hubei University of Technology, Wuhan 430068, China

6. Department of Measuring-Information Technologies, Lviv Polytechnic National University, Bandery 12, 79013 Lviv, Ukraine

Abstract

Increasing the energy efficiency of production processes is closely related to minimizing the impact on the environment and is one of the priorities of the concept of sustainable development. Electric discharge is an effective tool for multilevel grinding of non-metallic materials in various working fluids and obtaining coarse and fine suspensions. We introduce the technique for calculating the electrotechnological parameters necessary for energy-efficient electric discharge dispersion. This technique considers the strength characteristics of the crushed material (dispersed phase) and the electrical conductivity of the working fluid (dispersed medium). It is also essential to consider the energy stored in the capacitor bank, the energy criterion, the critical value of the working fluid’s electrical strength, the radius of the high-voltage electrode point, and the distance from the discharge channel axis to the disintegration object. All this allows obtaining a given granulometric composition of the dispersed phase with minimal energy consumption. Experiments confirmed the validity of the proposed calculation technique. We obtained the water-brown coal suspension with a given dispersion two times faster and consumed four times less energy in comparison with the known methods that did not take into account the electrical conductivity of the working liquid and the mechanical strength of the crushed material.

Funder

National Research Foundation of Ukraine

Lublin University of Technology—contract

Publisher

MDPI AG

Subject

Energy (miscellaneous),Energy Engineering and Power Technology,Renewable Energy, Sustainability and the Environment,Electrical and Electronic Engineering,Control and Optimization,Engineering (miscellaneous),Building and Construction

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