Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness

The paper considers the influence of impulse unloading of APS power block turbine on its dynamic steadiness. The performed calculations while simulating four various impulse turbine characteristics have shown that the highest effect is obtained while characteristics of APS power block turbine are cl...

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Main Author: Yu. D. Filipchik
Format: Article
Language:Russian
Published: Belarusian National Technical University 2012-06-01
Series:Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
Online Access:https://energy.bntu.by/jour/article/view/217
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spelling doaj-9643ad6aa91347238f44daf313082fb72021-07-29T08:45:36ZrusBelarusian National Technical UniversityIzvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika1029-74482414-03412012-06-010310.21122/1029-7448-2012-0-3-67-75211Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic SteadinessYu. D. Filipchik0Belarusian National Technical UniversityThe paper considers the influence of impulse unloading of APS power block turbine on its dynamic steadiness. The performed calculations while simulating four various impulse turbine characteristics have shown that the highest effect is obtained while characteristics of APS power block turbine are close to the characteristics of a steam turbine K-300/240. It has been established that an application of standard time interval for emergency automation startup and existing delay in the operation of electro-hydraulic transformer do not allow to influence on acceleration area and the positive effect due to load shedding is reached only due to an increase of braking site. While decreasing time period for control signal supply from 0,2 sec to 0,1 sec it is possible to increase steadiness by 10 %  for impulse characteristics of APS power blocks and by 39,9–42,6 % – for characteristics of the turbine K-300/240.https://energy.bntu.by/jour/article/view/217
collection DOAJ
language Russian
format Article
sources DOAJ
author Yu. D. Filipchik
spellingShingle Yu. D. Filipchik
Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness
Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
author_facet Yu. D. Filipchik
author_sort Yu. D. Filipchik
title Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness
title_short Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness
title_full Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness
title_fullStr Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness
title_full_unstemmed Evaluation of Impulse Unloading Efficiency Pertaining to APS Power Block Turbine for Higher Dynamic Steadiness
title_sort evaluation of impulse unloading efficiency pertaining to aps power block turbine for higher dynamic steadiness
publisher Belarusian National Technical University
series Izvestiâ Vysših Učebnyh Zavedenij i Ènergetičeskih ob Edinennij SNG. Ènergetika
issn 1029-7448
2414-0341
publishDate 2012-06-01
description The paper considers the influence of impulse unloading of APS power block turbine on its dynamic steadiness. The performed calculations while simulating four various impulse turbine characteristics have shown that the highest effect is obtained while characteristics of APS power block turbine are close to the characteristics of a steam turbine K-300/240. It has been established that an application of standard time interval for emergency automation startup and existing delay in the operation of electro-hydraulic transformer do not allow to influence on acceleration area and the positive effect due to load shedding is reached only due to an increase of braking site. While decreasing time period for control signal supply from 0,2 sec to 0,1 sec it is possible to increase steadiness by 10 %  for impulse characteristics of APS power blocks and by 39,9–42,6 % – for characteristics of the turbine K-300/240.
url https://energy.bntu.by/jour/article/view/217
work_keys_str_mv AT yudfilipchik evaluationofimpulseunloadingefficiencypertainingtoapspowerblockturbineforhigherdynamicsteadiness
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