48 resultados para Town Hall


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The Transition Town (TT) movement has grown to become a global phenomenon aimed at assisting towns and communities to envision sustainable and self-reliant futures post peak oil. Arguably, this movement offers an exciting alternative to traditional notions of growth and development. This paper explores the rise of the TT movement focusing particularly on the processes involved in establishing a ‘TT’ raising questions pertaining to governance and to notions of participatory democracy within the movement.

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A collaborative residency resulting in three performance presentations as part of an Interdisciplinary Artist Hothouse/Festival produced by Vitalstatistix.

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This paper seeks to animate discussion around how social class operates with adolescent girls from low socio-economic status backgrounds to shape and inform their decisions about participation in physical activity (PA) inside and outside of school. Examining the instance of girls in a single secondary school in an Australian regional town, the paper questions the impact of class and how the girls experience the obstacles, impediments and interferences to participation in PA. These girls are portrayed as living multiple, complex and embodied subjectivities that shape and are informed by the relational geographies in which they are located, as they interact ‘with’, ‘to’ and ‘between’ the social, emotional and classed hierarchies that require them to access familial and other resources in making decisions about participation in PA.

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The use of green building materials and products promotes conservation of non-renewable resources and help reduce associated environmental impacts. This article reports the acoustical performance of a precast panel system made largely from concrete waste material. Two major applications for such panels that are being investigated currently include walls and claddings to industrial and commercial buildings and sound barriers for urban freeways. In this study, the application of the concrete panels for optimizing reverberation time (RT) in sports halls is tested using numerical simulations. As an innovative approach, additional layers are added to the precast panels to improve their appearance. The absorption coefficients of the concrete panel improved significantly with the architectural finish. The material can be tuned according to the required peak frequency. The architectural finish helped reduce the RT for frequencies above 500 Hz. Its application to different types of ceilings revealed that the RT of curved ceiling reduced up to 40% compared to flat and hybrid ceiling. A comparison of wall and ceiling modifications in small, medium and large sports halls showed that medium-sized halls have better acoustical performance compared with small and large halls with ceiling as well as wall treatment.

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In simulations of the hydrodynamics of the multiphase flow in gas– liquid systems with finite sizes of bubbles, the important thing is to compute explicitly the time evolution of the gas–liquid interface in many engineering applications. The most commonly used methods representing this approach are: the volume of fluid and the phase field methods. The later has gained significant interest because of its capability of performing numerical computations on a fixed Cartesian grid without having to parametrise these objects (Eulerian approach) and at the same time it allows to follow the interface ( for example bubble’s shape) that change the topology. In this paper, both numerical (phase field method) and experimental results for the bubble shapes underneath a downward facing plane is presented. Experiments are carried out to see the bubble sliding motion underneath a horizontal and inclined anode. It is assumed that the bubble formed under the anode surface is deformed (flattened) due to buoyant field before it goes around the anode corner. The bubble elongates to form a tail-like shape. The change in shape of the bubble is almost instantaneous and has a significant effect on the localised hydrodynamics around the bubble, which could influence the dynamics of the flow patterns in the Hall–Héroult cell. This deformation is the main cause of the bubble wake and the induced flow field in the aluminium cell. Various parameters such as bubble size, deformation and its sliding mechanism at different surface tensions are discussed and compared with experimental results.