Zurück zu den Ergebnissen
Bibliografischer Datensatz · Ansicht und Zugriff
Artículo

Hydraulic transient analysis in low gas-liquid ratio pipelines under valve closure conditions: Pressure surge characteristics and predictive modeling

Xiaoming Luo et al · KeAi Communications Co. Ltd · 2026

Open Access verfügbar
Schnellübersicht. Prüfen Sie die grundlegenden Angaben und öffnen Sie den Inhalt über die Hauptschaltfläche. Die Seite zeigt nur die Informationen, die zum Identifizieren, Zitieren und Öffnen des Werks nötig sind.

Zugriff auf die Ressource

Öffnen Sie den Inhalt über die Hauptoption oder wählen Sie eine andere verfügbare Quelle.

DOAJ DOAJ Articles
Entrar por DOAJ
Hauptzugriff

Open Access verfügbar

Recurso identificado como acceso abierto, sin confirmar automáticamente si es texto completo directo.
Ressource öffnen

Übersicht

Descripción general del contenido del recurso.

The propagation dynamics of water hammer pressure waves in gas-liquid pipelines are predominantly influenced by gas-phase compressibility. To investigate the effects of the gas-liquid ratio and flow regime on the velocity and attenuation of the water hammer pressure wave, transient two-phase flow experiments were conducted in a 50 mm diameter, 145 m long pipeline. The results indicate that, unlike downstream valve closure, upstream valve closure induces liquid column separation, which reduces peak pressure and causes waveform hysteresis in liquid pipelines. As the gas-liquid ratio increases from 0.04% to 12.6%, the water hammer pressure wave velocity decreases from 298 to 146 m/s, accounting for 21.6% to 5.88% of the corresponding values in liquid pipelines. When the gas-liquid ratio exceeds 2.65%, the water hammer effect becomes negligible. Based on these findings, a predictive model incorporating the effects of line packing was developed by integrating interphase compression wave propagation and the unsteady friction mechanism. The prediction errors of this model are below 4.55%, accurately capturing the dynamics of secondary pressurization and wave velocity decay. These advancements provide essential theoretical support for the design and operation of gas-liquid pipelines.

Zitieren

Elegí el formato que necesitás y copiá la referencia al portapapeles.

APA 7

al, X. L. E. (2026). Hydraulic transient analysis in low gas-liquid ratio pipelines under valve closure conditions: Pressure surge characteristics and predictive modeling. https://doi.org/10.1016/j.jpse.2025.100376

MLA

al, Xiaoming Luo et. "Hydraulic transient analysis in low gas-liquid ratio pipelines under valve closure conditions: Pressure surge characteristics and predictive modeling." 2026. https://doi.org/10.1016/j.jpse.2025.100376.

Chicago

al, Xiaoming Luo et. 2026. "Hydraulic transient analysis in low gas-liquid ratio pipelines under valve closure conditions: Pressure surge characteristics and predictive modeling.". https://doi.org/10.1016/j.jpse.2025.100376.

Harvard

al, X. L. E. 2026, Hydraulic transient analysis in low gas-liquid ratio pipelines under valve closure conditions: Pressure surge characteristics and predictive modeling, KeAi Communications Co. Ltd, available at: https://doi.org/10.1016/j.jpse.2025.100376 [Accessed 7 Aug. 2026].

Teilen und drucken

Speichern Sie den Datensatz, kopieren Sie den Permalink oder drucken Sie ihn als PDF.

Referenz exportieren

Exportieren Sie den Datensatz in gängigen Formaten für Literaturverwaltungsprogramme.

Ressourcendetails

Bibliografische Angaben zur Prüfung, ob es sich um das richtige Material handelt.

Titel
Hydraulic transient analysis in low gas-liquid ratio pipelines under valve closure conditions: Pressure surge characteristics and predictive modeling
Autor / Mitwirkende
Xiaoming Luo et al
Verlag
KeAi Communications Co. Ltd
Erscheinungsjahr
2026
ISSN
2667-1433
ISSN
2667-1433
Sprache
Inglés

Schlagwörter

Entdecken Sie über diese Schlagwörter weitere verwandte Ressourcen.

Kopiert