24 resultados para Impacting drop


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The prediction of the pressure drop for turbulent single-phase fluid flow around sharp 90° bends is difficult owing to the complexity of the flow arising from frictional and separation effects. Several empirical equations exist, which accurately predict the pressure loss due to frictional effects. More recently, Crawford et al. [1] proposed an equation for the prediction of pressure loss due to separation of the flow. This work proposes a new composite equation for the prediction of pressure drop due to separation of the flow, which incorporates bends with ratio R/r <2. A new composite equation is proposed to predict pressure losses over the Reynolds number range 4 x 103-3 x 105. The predictions from the new equation are within a range of -4 to +6 per cent of existing experimental data.

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A model is presented for obtaining the step formation energy for metallic islands on (1 1 1) surfaces from Monte Carlo simulations. This model is applied to homo (Cu/Cu(1 1 1), Ag/Ag(1 1 1)) and heteroepitaxy (Ag/Pt(1 1 1)) systems. The embedded atom method is used to represent the interaction between the particles of the system, but any other type of potential could be used as well. The formulation can also be employed to consider the case of other single crystal surfaces, since the higher barriers for atom motion on other surfaces are not a hindrance for the simulation scheme proposed.

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This paper represents one element of a research project carried out into the mental health needs of children and young people with experiences of care in Northern Ireland. Focusing exclusively on qualitative data collected from 51 young people in care and aftercare, it discusses in the first instance how the challenges and difficulties faced by young people can manifest themselves in feelings and behaviours that may exemplify poor mental well-being. In doing so it provides an understanding of mental health in the context of these young people’s lives. Through offering a more detailed account of some of the specific issues that put these young people at increased risk, it highlights areas for further work and consideration as a means of protecting them against these risks. These include: dealing with experiences prior to care; easing and ‘‘normalising’’ the experience of living in care; and enhancing ‘‘safety nets’’ after care. A key objective of the research is to inform policy and practice through the accounts of children and young people. It is argued that more work needs to be done to find creative ways of enhancing the day-to-day experiences of young people while in care and when leaving care.

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This study investigated methyl methacrylate – polymethyl methacrylate powder bed interactions through droplet analyses, using model fluids and commercially available bone cement. The effects of storage temperature of liquid monomer and powder packing configuration on drop penetration time were investigated. Methyl methacrylate showed much more rapid imbibition than caprolactone due to decrease in both contact angle and fluid viscosity. Drop penetration of caprolactone through polymethyl methacrylate increased with decrease in bed macro-voids and increase in bulk density as predicted by the modified constant drawing area penetration model and confirmed by drop penetration images. Linear relationships were found between droplet mass and drawing area with imbibition time. Further experiments showed gravimetric analysis of the polymerised methyl methacrylate – polymethyl methacrylate matrix under various storage temperatures correlated with Reynolds number and Washburn analyses. These observations have direct implications for the design of mixing and delivery systems for acrylic bone cements used in orthopaedic surgery.