Publication detail

MODELOVÁNÍ OBJEMOVÝCH ZMĚN TEKUTINY U HYDRAULICKÝCH VAZEBNÝCH ELEMENTŮ V ROTOROVÝCH SOUSTAVÁCH

HOUFEK, L., MALENOVSKÝ, E.

Original Title

MODELOVÁNÍ OBJEMOVÝCH ZMĚN TEKUTINY U HYDRAULICKÝCH VAZEBNÝCH ELEMENTŮ V ROTOROVÝCH SOUSTAVÁCH

English Title

MODELING ROTOR DYNAMIC SYSTEMS WITH HYDRAULIC COUPLING ELEMENTS WITH VARIABLE QUANTITY OF FLUIDS

Type

conference paper

Language

Czech

Original Abstract

In the paper is presented analysis of inflow and outflow in hydraulic coupling elements in rotor systems. The models of squeeze film damper and hydraulic bearing are developed now. For solutions is used control volume method. There are presented two models of boundary conditions in segment and in volume. Three locations of eccentricity are solved centered shaft position, 50% bearing gap and 99% bearing gap. Three values of angular velocity of shaft 0, 10 and 100 rad/s are solved.

English abstract

In the paper is presented analysis of inflow and outflow in hydraulic coupling elements in rotor systems. The models of squeeze film damper and hydraulic bearing are developed now. For solutions is used control volume method. There are presented two models of boundary conditions in segment and in volume. Three locations of eccentricity are solved centered shaft position, 50% bearing gap and 99% bearing gap. Three values of angular velocity of shaft 0, 10 and 100 rad/s are solved.

Keywords

HYDRAULIC COUPLING ELEMENTS WITH VARIABLE QUANTITY OF FLUIDS

Key words in English

ložiska

Authors

HOUFEK, L., MALENOVSKÝ, E.

RIV year

2004

Released

20. 1. 2004

Publisher

ZČU Plzeň

Location

Plzeň

ISBN

80-7082-780-7

Book

Výpočtová mechanika

Pages from

97

Pages to

104

Pages count

8

BibTex

@inproceedings{BUT3165,
  author="Lubomír {Houfek} and Eduard {Malenovský}",
  title="MODELOVÁNÍ OBJEMOVÝCH ZMĚN TEKUTINY U HYDRAULICKÝCH VAZEBNÝCH ELEMENTŮ V ROTOROVÝCH SOUSTAVÁCH",
  booktitle="Výpočtová mechanika",
  year="2004",
  pages="8",
  publisher="ZČU Plzeň",
  address="Plzeň",
  isbn="80-7082-780-7"
}