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Tim Taylor

Tim Taylor

Tim joined The Cyprus Institute in October 2015. He has an MSc in Information Systems and an honours Bachelor degree in Marketing. Tim has 23 years experience in IT. Prior to joining The Cyprus Institute he has held positions as web developer, database admin and project manager for private sector and governmental employers in Cyprus and UK.

Seminar: Using Developmental Growth Patterns in Teeth to Improve the Resolution of Isotopic Analyses: a Case Study of Wild Boar Feasting in Early Neolithic Asiab, Western Iran

Training Workshop: Fundamental Statistics for Isotope Analyses

Public Lecture - State-of-the-art Image-Guided Therapies for Colorectal Liver Metastases: The Evolution of Interventional Oncology through Advanced Technologies

CyI Research Project to Investigate How Dust and Wildfires Contribute to Regional Climate Warming

COMPASS – Comprehensive Online Monitor for Ambient Particle Analysis

CyI Expertise on Climate Change and Cultural Heritage at the UNFCCC Subsidiary Bodies (SB62) in Bonn

MapLoS Cy - Mapping the Cult of Local Saints in Cyprus: Sites and Images (11th - 15th Century)

MiDOpt-H - Microfluidic Design Optimization for Health Diagnostics

Working on Smart Solutions for a Dry Land: The Cyprus Institute Marks World Desertification and Drought Day

Strategic Alliance for Cultural Heritage: The Cyprus Institute and the Cyprus National Commission for UNESCO, Sign Memorandum of Understanding

  1. August 2016
  2. September 2016
For the initial monitoring of the building the SUI CyI research team installed a weather station on the roof, placed sensors inside the building and performed a thermal comfort assessment survey.

1. Climate data monitoring

Exterior
A Vantage Pro2 weather station was placed on the building roof to collect data from the SUI area. Regularly updated information about the climatic conditions could be found on the station webpage: http://www.weatherlink.com/user/suitepakcy/. The weather station base was designed and installed by the CyI technical equipment development team.

Interior
Twelve (12) HOBO data-loggers were placed in the building, for collecting temperature, humidity and light data. The data are collected every 30 minutes and will be elaborated with the HOBOware software.

2. Thermal comfort assessment questionnaire

A survey on occupant comfort satisfaction with the indoor environment in summer was conducted. The questionnaire was based on templates proposed by the HSE (http://www.hse.gov.uk/temperature/index.htm). A third of the total employees were asked and complementary measurements were made using a Heat Stress WBGT (Wet Bulb Globe Temperature) Meter, both for the indoor and the outdoor climatic conditions at the time of the survey.

Images below, from left to right:
Left: The Vantage Pro2 weather station
Middle: HOBO data logger placed in the working place – 1st floor
Right: Completed questionnaire (first page) – Ground floor.

1. Thermal imaging

Thermal images were taken using a T440 Flir thermal camera in order to find missing, damaged, or inadequate insulation, building envelope air leaks, moisture intrusion and other problems. Also, the main sources of radiant temperature were determined.

2. HOBO sensors data collection and analysis

The temperature, humidity, air movement and dew point data from the HOBO sensors were collected and analysed. The mean predicted vote (PMV) was calculated using the CBE Thermal Comfort Tool (http://comfort.cbe.berkeley.edu/EN). In all the spaces under monitoring the people are expected to be in thermal comfort, since all values are within the thermal comfort range of -0.7

Images below, from left to right:
Left: A thermal image from the mezzanine
Right: Graph. Thermal Comfort PMV

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