Rationale for vacuum-pulse pump devices applied on cattle farms

One of the main elements to foster technological processes in animal husbandry are vacuumpulse pump devices designed to support dosing, mixing, transporting, lines for forage preparation and feeding, milking cows, milk processing, as well as a large number of technological processes in agriculture....

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Autores principales: Nafikov Insaf, Khusainov Rail, Lukmanov Ruslan, Galiev Ilgiz, Gayfullin Ilnur
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FR
Publicado: EDP Sciences 2021
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Acceso en línea:https://doaj.org/article/658710d9310046f4b775830841e3fb82
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spelling oai:doaj.org-article:658710d9310046f4b775830841e3fb822021-11-08T15:17:31ZRationale for vacuum-pulse pump devices applied on cattle farms2117-445810.1051/bioconf/20213700126https://doaj.org/article/658710d9310046f4b775830841e3fb822021-01-01T00:00:00Zhttps://www.bio-conferences.org/articles/bioconf/pdf/2021/09/bioconf_fies2021_00126.pdfhttps://doaj.org/toc/2117-4458One of the main elements to foster technological processes in animal husbandry are vacuumpulse pump devices designed to support dosing, mixing, transporting, lines for forage preparation and feeding, milking cows, milk processing, as well as a large number of technological processes in agriculture. The paper discusses a vacuum-pulse pumping device widely used in all industries and agriculture, a feature of which is to improve technical characteristics of the pump avoiding direct mechanical energy consumption and boasting a fairly simple design. In vacuum-pulse pumping devices, transient events are caused deliberately to increase ejection coefficient, productivity, etc. Oscillating flows of materials being transported are very diverse, due to an increased number of similarity criteria that determine flow patterns. Whereas superficial velocity and the Reynolds number are commonly used for a steady flow, for an oscillating flow, the relative frequency and the relative amplitude of oscillations are added. The objects of experimental research were ejectors with oscillating flows. The wider objective of the experiments was to determine the most effective performance indicators of the ejectors, including the degree of pressure increase, the ejection coefficient and the geometric parameter. Resulting from the experiments, a direct relationship was established between changes in the performance of a pulse-vacuum pumping device and valve material and magnitude of its oscillations. A pulse ejector is recommended to have metal-seated ball valves with a pulsation frequency of 90–100 min−1. Once applied, the proposed pulse ejector will eventually increase the transportation productivity by 14.5 %.Nafikov InsafKhusainov RailLukmanov RuslanGaliev IlgizGayfullin IlnurEDP SciencesarticleMicrobiologyQR1-502PhysiologyQP1-981ZoologyQL1-991ENFRBIO Web of Conferences, Vol 37, p 00126 (2021)
institution DOAJ
collection DOAJ
language EN
FR
topic Microbiology
QR1-502
Physiology
QP1-981
Zoology
QL1-991
spellingShingle Microbiology
QR1-502
Physiology
QP1-981
Zoology
QL1-991
Nafikov Insaf
Khusainov Rail
Lukmanov Ruslan
Galiev Ilgiz
Gayfullin Ilnur
Rationale for vacuum-pulse pump devices applied on cattle farms
description One of the main elements to foster technological processes in animal husbandry are vacuumpulse pump devices designed to support dosing, mixing, transporting, lines for forage preparation and feeding, milking cows, milk processing, as well as a large number of technological processes in agriculture. The paper discusses a vacuum-pulse pumping device widely used in all industries and agriculture, a feature of which is to improve technical characteristics of the pump avoiding direct mechanical energy consumption and boasting a fairly simple design. In vacuum-pulse pumping devices, transient events are caused deliberately to increase ejection coefficient, productivity, etc. Oscillating flows of materials being transported are very diverse, due to an increased number of similarity criteria that determine flow patterns. Whereas superficial velocity and the Reynolds number are commonly used for a steady flow, for an oscillating flow, the relative frequency and the relative amplitude of oscillations are added. The objects of experimental research were ejectors with oscillating flows. The wider objective of the experiments was to determine the most effective performance indicators of the ejectors, including the degree of pressure increase, the ejection coefficient and the geometric parameter. Resulting from the experiments, a direct relationship was established between changes in the performance of a pulse-vacuum pumping device and valve material and magnitude of its oscillations. A pulse ejector is recommended to have metal-seated ball valves with a pulsation frequency of 90–100 min−1. Once applied, the proposed pulse ejector will eventually increase the transportation productivity by 14.5 %.
format article
author Nafikov Insaf
Khusainov Rail
Lukmanov Ruslan
Galiev Ilgiz
Gayfullin Ilnur
author_facet Nafikov Insaf
Khusainov Rail
Lukmanov Ruslan
Galiev Ilgiz
Gayfullin Ilnur
author_sort Nafikov Insaf
title Rationale for vacuum-pulse pump devices applied on cattle farms
title_short Rationale for vacuum-pulse pump devices applied on cattle farms
title_full Rationale for vacuum-pulse pump devices applied on cattle farms
title_fullStr Rationale for vacuum-pulse pump devices applied on cattle farms
title_full_unstemmed Rationale for vacuum-pulse pump devices applied on cattle farms
title_sort rationale for vacuum-pulse pump devices applied on cattle farms
publisher EDP Sciences
publishDate 2021
url https://doaj.org/article/658710d9310046f4b775830841e3fb82
work_keys_str_mv AT nafikovinsaf rationaleforvacuumpulsepumpdevicesappliedoncattlefarms
AT khusainovrail rationaleforvacuumpulsepumpdevicesappliedoncattlefarms
AT lukmanovruslan rationaleforvacuumpulsepumpdevicesappliedoncattlefarms
AT galievilgiz rationaleforvacuumpulsepumpdevicesappliedoncattlefarms
AT gayfullinilnur rationaleforvacuumpulsepumpdevicesappliedoncattlefarms
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