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Dive into the research topics where Celine Garnier is active.

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Featured researches published by Celine Garnier.


Building Services Engineering Research and Technology | 2008

Modelling bulk water temperature in integrated collector storage systems.

John Currie; Celine Garnier; Tariq Muneer; Tom Grassie; Douglas Henderson

A simple low cost Integrated Collector Storage Solar Water Heater (ICS-SWH) was proposed for simulation in Scottish weather conditions. The system takes the form of a rectangular-shaped design incorporating the solar collector and storage tank into a single unit and the simplicity of construction and installation make this type of SWH a popular choice of solar water heater. A 3-month experimental and numerical study on the ICS-SWH was undertaken in order to compare the results with a newly developed macro model. Improvements were incorporated into the macro model by differentiating non-finned and finned collectors. The macro model was able to compare the water bulk temperature variation in different SWH collector material, with or without fins, internal temperature and external weather conditions for a given aspect ratio. Numerical results obtained by this new tool were found to be in close agreement with the experimental data. Practical applications: Direct comparison of measured system performances is relatively straight forward; however, predicting the performance of an ICS-SWH at another location or with a different installation configuration is more challenging. A model able to predict water temperature in ICS-SWH would be a useful tool to allow any user to predict the performance of the installed SWH, depending on the orientation and location. Builders could use such a tool to demonstrate the performance of the ICS-SWH and the benefit of such installation.


Journal of Renewable and Sustainable Energy | 2011

Thermal model for performance prediction of integrated collector storage systems

Celine Garnier; Tariq Muneer; John Currie

The result of many years of global research on solar water heating systems has outlined the promising approach of integrated collector storage solar water heaters (ICS-SWHs) in cold climates. This research paper aims to model the field performance of a newly developed ICS-SWH for Scottish weather conditions. Field experiments were performed to investigate the performance of the newly developed ICS-SWH and the parameters affecting it. This was followed by developing a thermal macromodel able to compare the internal temperature variation under differing external weather conditions in order to evaluate the transient performance of the ICS-SWH for field conditions. Through this work, important parameters for modeling field performance of ICS-SWH were established. The innovative modeling tool developed was found to accurately predict the bulk water temperature of the ICS-SWH for any orientation and location in the world with good accuracy.


Applied Energy | 2009

Integrated collector storage solar water heater: Temperature stratification

Celine Garnier; John Currie; Tariq Muneer


Building and Environment | 2015

Super insulated aerogel windows: Impact on daylighting and thermal performance.

Celine Garnier; Tariq Muneer; L McCauley


Energy and Buildings | 2016

A longitudinal building fabric and energy performance analysis of two homes built to different energy principles

Julio Bros-Williamson; Celine Garnier; John Currie


NeuroRehabilitation | 2014

In-situ monitoring of thermal refurbishment on pre-1919 properties in Scotland.

Julio Bros Williamson; Jon Stinson; Celine Garnier; John Currie


Energies | 2018

Thermal Performance through Heat Retention in Integrated Collector-Storage Solar Water Heaters: A Review

Ruth Saint; Celine Garnier; Francesco Pomponi; John Currie


Archive | 2008

Computational study of an integrated collector storage solar water heater

Celine Garnier; John Currie; Tariq Muneer; Aymeric Girard


Renewable Energy | 2018

Numerical and empirical evaluation of a novel building integrated collector storage solar water heater

Celine Garnier; Tariq Muneer; John Currie


Archive | 2015

Energy demand benchmarking of non-domestic buildings in Scotland.

Julien Chetboul; Celine Garnier; Julio Bros Williamson

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John Currie

Edinburgh Napier University

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Tariq Muneer

Edinburgh Napier University

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Jon Stinson

Edinburgh Napier University

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Douglas Henderson

Edinburgh Napier University

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Francesco Pomponi

Edinburgh Napier University

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L McCauley

Edinburgh Napier University

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Tom Grassie

Edinburgh Napier University

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Aymeric Girard

Adolfo Ibáñez University

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