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Book part
Publication date: 4 March 2024

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Managing Destinations
Type: Book
ISBN: 978-1-83797-176-3

Open Access
Article
Publication date: 17 May 2024

Lisa Engström, Hanna Carlsson and Fredrik Hanell

The purpose of the paper is to produce new knowledge about the positions that public libraries both take and are given in the conflicts over politics and identity that play out in…

Abstract

Purpose

The purpose of the paper is to produce new knowledge about the positions that public libraries both take and are given in the conflicts over politics and identity that play out in contemporary cultural and library policy debates. Using conflicts over drag story hour at public libraries as case, the study seeks to contribute to an emerging body of research that delves into the challenges that public libraries as promoters of democracy are confronting in the conflictual political landscape of today.

Design/methodology/approach

The paper presents an analysis of debates reported in news articles concerning Drag story hour events held at Swedish public libraries. Utilizing the analytical lenses of discourse theory and plural agonistics, the analysis serves to make visible the lines of conflicts drawn in these debates – particularly focusing on the intersection of different meanings ascribed to the notion of the reading child, and how fear is constructed and used as an othering devise in these conflicts.

Findings

Different imaginings of the reading child and the construction and imagination of fear and safety shapes the Drag story hour debates. The controversies can be understood as a challenge to the previous hegemony regarding the direction and goals of Swedish cultural and library policy and the pluralistic democratic society these policies are meant to promote.

Originality/value

The paper offers new insights into the consequences of the revival of radical right politics, populism and societal polarization, and the different responses from public libraries.

Details

Journal of Documentation, vol. 80 no. 7
Type: Research Article
ISSN: 0022-0418

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Article
Publication date: 5 September 2023

Nikesh Chowrasia, Subramani S.N., Harish Pothukuchi and B.S.V. Patnaik

Subcooled flow boiling phenomenon is characterized by coolant phase change in the vicinity of the heated wall. Although coolant phase change from liquid to vapour phase…

Abstract

Purpose

Subcooled flow boiling phenomenon is characterized by coolant phase change in the vicinity of the heated wall. Although coolant phase change from liquid to vapour phase significantly enhances the heat transfer coefficient due to latent heat of vaporization, eventually the formed vapor bubbles may coalesce and deteriorate the heat transfer from the heated wall to the liquid phase. Due to the poor heat transfer characteristics of the vapour phase, the heat transfer rate drastically reduces when it reaches a specific value of wall heat flux. Such a threshold value is identified as critical heat flux (CHF), and the phenomenon is known as departure from nucleate boiling (DNB). An accurate prediction of CHF and its location is critical to the safe operation of nuclear reactors. Therefore, the present study aims at the prediction of DNB type CHF in a hexagonal sub-assembly.

Design/methodology/approach

Computational fluid dynamics (CFD) simulations are performed to predict DNB in a hexagonal sub-assembly. The methodology uses an Eulerian–Eulerian multiphase flow (EEMF) model in conjunction with multiple size group (MuSiG) model. The breakup and coalescence of vapour bubbles are accounted using a population balance approach.

Findings

Bubble departure diameter parameters in EEMF framework are recalibrated to simulate the near atmospheric pressure conditions. The predictions from the modified correlation for bubble departure diameter are found to be in good agreement against the experimental data. The simulations are further extended to investigate the influence of blockage (b) on DNB type CHF at low operating pressure conditions. Larger size vapour bubbles are observed to move away from the corner sub-channel region due to the presence of blockage. Corner sub-channels were found to be more prone to experience DNB type CHF compared to the interior and edge sub-channels.

Practical implications

An accurate prediction of CHF and its location is critical to the safe operation of nuclear reactors. Moreover, a wide spectrum of heat transfer equipment of engineering interest will be benefited by an accurate prediction of wall characteristics using breakup and coalescence-based models as described in the present study.

Originality/value

Simulations are performed to predict DNB type CHF. The EEMF and wall heat flux partition model framework coupled with the MuSiG model is novel, and a detailed variation of the coolant velocity, temperature and vapour volume fraction in a hexagonal sub-assembly was obtained. The present CFD model framework was observed to predict the onset of vapour volume fraction and DNB type CHF. Simulations are further extended to predict CHF in a hexagonal sub-assembly under the influence of blockage. For all the values of blockage, the vapour volume fraction is found to be higher in the corner region, and thus the corner sub-channel experiences CHF. Although DNB type CHF is observed in corner sub-channel, it is noticed that the presence of blockage in the interior sub-channel promotes the coolant mixing and results in higher values of CHF in the corner sub-channel.

Details

International Journal of Numerical Methods for Heat & Fluid Flow, vol. 33 no. 12
Type: Research Article
ISSN: 0961-5539

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