Wave structure and flow amplitude-frequency characteristics in the turbine nozzle lattice in the presence of phase transition


Цитировать

Полный текст

Открытый доступ Открытый доступ
Доступ закрыт Доступ предоставлен
Доступ закрыт Только для подписчиков

Аннотация

This paper is devoted to the wave structure of a flow at its near- and supersonic velocities in a flat turbine cascade of profiles in the zone of phase transitions. The main task was investigation of the mechanics of interaction of the condensation jump with the adiabatic jumps of packing in a change of the initial condition of the flow. The obtained results are necessary for verification of the calculation models of the moisture-steam flow in the elements of lotic parts of the steam turbines. The experimental tests were made on a stand of the wet steam contour (WSC-2) in the Moscow Power Engineering Institute (MPEI, National Research University) at various initial states of steam in a wide range of Mach numbers. In the investigation of the wave structure, use was made of an instrument based on the Schlieren-method principle. The amplitude-frequency characteristics of the flow was found by measurement of static pressure pulsations by means of the piezo resistive sensors established on a bandage plate along the bevel cut of the cascade. It is shown that appearance of phase transitions in the bevel cut of the nozzle turbine cascade leads to a change in the wave structure of the flow. In case of condensation jump, the system of adiabatic jumps in the bevel cut of the cascade becomes nonstationary, and the amplitude-frequency characteristics of static pressure pulsations are restructured. In this, a change in the frequency pulsations of pressure and amplitude takes place. It is noted that, at near-sonic speeds of the flow and the state of saturation at the input, the low-frequency pulsations of static pressure appear that lead to periodic disappearance of the condensation jump and of the adiabatic jump. As a result, in this mode, the flow discharge variations take place.

Об авторах

R. Alekseev

Moscow Power Engineering Institute (MPEI, National Research University)

Email: GribinVG@mpei.ru
Россия, Moscow, 111250

V. Gribin

Moscow Power Engineering Institute (MPEI, National Research University)

Автор, ответственный за переписку.
Email: GribinVG@mpei.ru
Россия, Moscow, 111250

I. Gavrilov

Moscow Power Engineering Institute (MPEI, National Research University)

Email: GribinVG@mpei.ru
Россия, Moscow, 111250

A. Tishchenko

Moscow Power Engineering Institute (MPEI, National Research University)

Email: GribinVG@mpei.ru
Россия, Moscow, 111250

V. Tishchenko

Moscow Power Engineering Institute (MPEI, National Research University)

Email: GribinVG@mpei.ru
Россия, Moscow, 111250

Дополнительные файлы

Доп. файлы
Действие
1. JATS XML

© Pleiades Publishing, Inc., 2017

Согласие на обработку персональных данных

 

Используя сайт https://journals.rcsi.science, я (далее – «Пользователь» или «Субъект персональных данных») даю согласие на обработку персональных данных на этом сайте (текст Согласия) и на обработку персональных данных с помощью сервиса «Яндекс.Метрика» (текст Согласия).