An approach to optimize the design of hydraulic reservoirs

Increasing demands regarding performance, safety and environmental compatibility of hydraulic mobile machines in combination with rising cost pressures create a growing need for specialized optimization of hydraulic systems; particularly with regard to hydraulic reservoirs. In addition to the second...

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Main Authors: Wohlers, Alexander, Backes, Alexander, Schönfeld, Dirk
Other Authors: Dresdner Verein zur Förderung der Fluidtechnik e. V.,
Format: Others
Language:English
Published: Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden 2016
Subjects:
Online Access:http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-199955
http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-199955
http://www.qucosa.de/fileadmin/data/qucosa/documents/19995/M-3_PDF_A_An%20approach%20to%20optimize%20the%20design%20of%20hydraulic%20reservoirs.pdf
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spelling ndltd-DRESDEN-oai-qucosa.de-bsz-14-qucosa-1999552016-05-04T03:27:30Z An approach to optimize the design of hydraulic reservoirs Wohlers, Alexander Backes, Alexander Schönfeld, Dirk Hydraulic reservoirs filter-tank system numerical optimization experiment simulation de-aeration performance degassing function heat transfer ddc:620 rvk:ZQ 5460 Increasing demands regarding performance, safety and environmental compatibility of hydraulic mobile machines in combination with rising cost pressures create a growing need for specialized optimization of hydraulic systems; particularly with regard to hydraulic reservoirs. In addition to the secondary function of cooling the oil, two main functions of the hydraulic reservoir are oil storage and de-aeration of the hydraulic oil. While designing hydraulic reservoirs regarding oil storage is quite simple, the design regarding de-aeration can be quite difficult. The author presents an approach to a system optimization of hydraulic reservoirs which combines experimental and numerical techniques to resolve some challenges facing hydraulic tank design. Specialized numerical tools are used in order to characterize the de-aeration performance of hydraulic tanks. Further the simulation of heat transfer is used to study the cooling function of hydraulic tank systems with particular attention to plastic tank solutions. To accompany the numerical tools, experimental test rigs have been built up to validate the simulation results and to provide additional insight into the design and optimization of hydraulic tanks which will be presented as well. Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden Dresdner Verein zur Förderung der Fluidtechnik e. V., Technische Universität Dresden, Fakultät Maschinenwesen 2016-04-28 doc-type:conferenceObject application/pdf http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-199955 urn:nbn:de:bsz:14-qucosa-199955 http://www.qucosa.de/fileadmin/data/qucosa/documents/19995/M-3_PDF_A_An%20approach%20to%20optimize%20the%20design%20of%20hydraulic%20reservoirs.pdf 10th International Fluid Power Conference (10. IFK) March 8 - 10, 2016, Vol. 1, pp. 609-618 eng
collection NDLTD
language English
format Others
sources NDLTD
topic Hydraulic reservoirs
filter-tank system
numerical optimization
experiment
simulation
de-aeration performance
degassing function
heat transfer
ddc:620
rvk:ZQ 5460
spellingShingle Hydraulic reservoirs
filter-tank system
numerical optimization
experiment
simulation
de-aeration performance
degassing function
heat transfer
ddc:620
rvk:ZQ 5460
Wohlers, Alexander
Backes, Alexander
Schönfeld, Dirk
An approach to optimize the design of hydraulic reservoirs
description Increasing demands regarding performance, safety and environmental compatibility of hydraulic mobile machines in combination with rising cost pressures create a growing need for specialized optimization of hydraulic systems; particularly with regard to hydraulic reservoirs. In addition to the secondary function of cooling the oil, two main functions of the hydraulic reservoir are oil storage and de-aeration of the hydraulic oil. While designing hydraulic reservoirs regarding oil storage is quite simple, the design regarding de-aeration can be quite difficult. The author presents an approach to a system optimization of hydraulic reservoirs which combines experimental and numerical techniques to resolve some challenges facing hydraulic tank design. Specialized numerical tools are used in order to characterize the de-aeration performance of hydraulic tanks. Further the simulation of heat transfer is used to study the cooling function of hydraulic tank systems with particular attention to plastic tank solutions. To accompany the numerical tools, experimental test rigs have been built up to validate the simulation results and to provide additional insight into the design and optimization of hydraulic tanks which will be presented as well.
author2 Dresdner Verein zur Förderung der Fluidtechnik e. V.,
author_facet Dresdner Verein zur Förderung der Fluidtechnik e. V.,
Wohlers, Alexander
Backes, Alexander
Schönfeld, Dirk
author Wohlers, Alexander
Backes, Alexander
Schönfeld, Dirk
author_sort Wohlers, Alexander
title An approach to optimize the design of hydraulic reservoirs
title_short An approach to optimize the design of hydraulic reservoirs
title_full An approach to optimize the design of hydraulic reservoirs
title_fullStr An approach to optimize the design of hydraulic reservoirs
title_full_unstemmed An approach to optimize the design of hydraulic reservoirs
title_sort approach to optimize the design of hydraulic reservoirs
publisher Saechsische Landesbibliothek- Staats- und Universitaetsbibliothek Dresden
publishDate 2016
url http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-199955
http://nbn-resolving.de/urn:nbn:de:bsz:14-qucosa-199955
http://www.qucosa.de/fileadmin/data/qucosa/documents/19995/M-3_PDF_A_An%20approach%20to%20optimize%20the%20design%20of%20hydraulic%20reservoirs.pdf
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