PROSPECTS FOR INCREASING THE EFFICIENCY OF PNEUMATIC SEPARATION CHANNELS IN CLEANING GRAIN AND SEED MATERIALS

Authors

  • S. Kharchenko Poltava State Agrarian University, Skovorodi Street, 1/3, Poltava, 36003, Ukraine
  • V. Lytvynenko Poltava State Agrarian University, Skovorodi Street, 1/3, Poltava, 36003, Ukraine
  • S. Kovalyshyn Lviv National Agrarian University, Volodymyra Velykoho Street, 1, Dublyany, 30831, Ukraine

Keywords:

separation channel, cleaning, properties, grain, seeds, loading, channel width, efficiency

Abstract

The technological process of most universal grain and seed cleaning machines consists of the separation of
components by aerodynamic characteristics on the pneumatic separation channels and the separation of components
by size on the sieves. The restraining factor in further increasing the productivity of grain and seed cleaning
machines is the imperfect design of pneumatic separation channels. The analysis carried out made it possible to
determine the basic designs of pneumatic separating channels, their working elements and intensifying devices. This
allowed creating a classification of pneumatic separation channels according to various structural, technological and
functional features. The conducted system analysis established that one of the factors affecting the efficiency of
cleaning grain or seed materials is the uniformity of loading of the pneumatic separation channel along its width. To
determine the degree of significance of this factor, a research methodology has been developed. The description of
conducting experimental researches is given, mathematical expressions for determining the uniformity of the supply
of grain and seed materials are established. A list of design and technological parameters and properties of grain
(seed) mixtures, which affect the efficiency of pneumatic separation channels, is presented.

References

Atramentova L. O., Utevskaya O. M. 2008. Statistical

methods in biology. Horlivka: Lichtar Publishing

House, 248 p.

ISO 605:1977 Pulses — Methods of test.

ISO 7970:2021 Wheat (Triticum aestivum L.) —

Specification.

Zaika P. M., Slonovskiy N. V. 1997. Study of the

trajectory of the movement of seeds during

pneumatic separation of seed materials. Technology

of production and design of agricultural machines:

Collection of scientific works. HSAU, Ukraine,

P. 142–147.

Burkov A. I. 1993. Improving the efficiency of the

functioning of pneumatic systems of grain and seed

cleaning machines by improving their technological

process and the main working bodies: dissertation

for the degree of Doctor of Technical Sciences:

20.01 / Kirov, 500 p.

Andreev V. L. 2005. Increasing the efficiency of cleaning seeds of grain crops in the conditions of

the Euro-North-East region by developing and

improving technologies and air-sieve machines:

dissertation abstract for the degree of Doctor of

Technical Sciences: 05.20.01 / Kirov, 39 p.

Kotov B. I., Stepanenko S. P., Shvydia V. O. 2010. The

results of experimental studies of pneumatic

separation of grain in a pneumatic centrifugal

separator with an improved experimental disk.

Collection of scientific works of Kirovohrad

National Technical University. Kirovohrad:

KNTU, Vol. 23, P. 250 – 257.

Vasylkovskyi M. I., Vasylkovskyi O. M.,

Leshchenko S. M., Nesterenko O. V. 2006. Study

of the operation of the pneumatic separation

channel on a physical model. Collection of

scientific works of Kirovohrad National Technical

University. Machinery in agricultural production,

industrial engineering, automation. Kirovohrad,

Vol.17. P. 44 – 48.

Stepanenko S. P. 2017. Research pneumatic gravity

separation grain materials. Mechanizanion in

agriculture, conserving of the resources.

Bulgarian association of mechanizanion in

agriculture. Vol. 2. P. 54–56.

Slipchenko M. V. 2012. Substantiation of the process

parameters and development of a pneumatic

separation device for vibrocentrifugal grain

separators: dissertation for the degree of Doctor of

Technical Sciences: 05.05.11 / KhNTUA.

Kharkiv, 273 p.

Kharchenko S., Borshch Y., Kovalyshyn S.,

Popardowski E., Kiełbasa P. 2021. Modeling of

aerodynamic separation of preliminarily stratified

grain mixture in vertical pneumatic separation

duct. Applied Sciences (Switzerland), 11(10),

Abduiev М. М. 2007. Substantiation of parameters of

the separator with the inclined air channel for

separation of grain mixtures: dissertation for the

degree of Doctor of Technical Sciences: 05.05.11 /

KhNTUA. Kharkiv, 296 p.

Burkov A. I., Andreev V. L. 2002. Technology for

cleaning grain seeds with fractionation on sieves

and separate processing by air flow. Scientific

works of VIM. Vol. 141, ch. 2. P. 103–111.

Yermak V. P. 2003. Improving the method of

separating sunflower seeds in air streams:

dissertation abstract for the degree of Doctor of

Technical Sciences: 05.05.11 / Luhansk National

Agrarian University. Luhansk, 18 p.

Downloads

Published

2021-05-05

Issue

Section

Статті