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    <creators>
      <item>
        <name>
          <family>Ibrahim</family>
          <given>Yasser</given>
        </name>
        <id>Y.M.M.Ibrahim@bath.ac.uk</id>
        <orcid>0000-0002-1213-2452</orcid>
        <affiliation>University of Bath</affiliation>
        <contact>TRUE</contact>
      </item>
    </creators>
    <contributors>
      <item>
        <type>Supervisor</type>
        <name>
          <family>Kershaw</family>
          <given>Tristan</given>
        </name>
        <id>T.J.Kershaw@bath.ac.uk</id>
        <orcid>0000-0003-2148-5396</orcid>
        <affiliation>University of Bath</affiliation>
      </item>
      <item>
        <type>Supervisor</type>
        <name>
          <family>Shepherd</family>
          <given>Paul</given>
        </name>
        <id>P.Shepherd@bath.ac.uk</id>
        <orcid>0000-0001-7078-4232</orcid>
        <affiliation>University of Bath</affiliation>
      </item>
    </contributors>
    <title>Dataset for &quot;A parametric optimisation study of urban geometry design to assess outdoor thermal comfort.&quot;</title>
    <divisions>
      <item>dept_civ_eng</item>
    </divisions>
    <keywords>Thermal comfort, UTCI, Urban geometry, Ladybug-tools, Optimisation</keywords>
    <abstract>This dataset supports the study on the effect of urban geometry parameters, namely, building heights (H), street widths (W), aspect ratio (H/W) and orientation on the outdoor thermal comfort conditions in Cairo, Egypt. The study uses Grasshopper for Rhino3D and its environmental plugins, Ladybug-tools, to analyse thermal comfort represented by the Universal Thermal Climate Index (UTCI) of multiple geometry configurations. The data files include the input parameters (prefixed &quot;in:&quot;), processed data and the output UTCI (prefixed &quot;out:&quot;) in each phase of the study.</abstract>
    <date>2021-09-22</date>
    <publisher>University of Bath</publisher>
    <full_text_status>public</full_text_status>
    <corp_contributors>
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        <type>RightsHolder</type>
        <corpname>University of Bath</corpname>
      </item>
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    <funding>
      <item>
        <funder_name>Ministry of Defense (Egypt)</funder_name>
      </item>
    </funding>
    <research_centres>
      <item>cent_eden</item>
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    <collection_method>TT-Toolbox Colibri Iterator was used to iterate the simulation of each geometrical configuration consecutively. Upon each run, EnergyPlus calculates the outside surface temperatures, which are used as part of the Mean Radiant Temperature (MRT) calculation. Ladybug-tools plugins were used to agglomerate the data streamed from EnergyPlus and the Urban Weather Generator to estimate the UTCI. Upon each iteration, the Colibri plugin exported the results to a CSV file.</collection_method>
    <techinfo>Rhinoceros V.6 Service Release 29
Grasshopper Build 1.0.0007
Ladybug V.0.0.69 Honeybee V.0.0.66</techinfo>
    <language>en</language>
    <version>1</version>
    <doi>10.15125/BATH-01045</doi>
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        <link>https://doi.org/10.1016/j.scs.2021.103352</link>
        <type>pub</type>
      </item>
      <item>
        <link>https://researchportal.bath.ac.uk/en/studentTheses/integration-of-advanced-techniques-for-the-optimisation-of-energy</link>
        <type>thesis</type>
      </item>
    </related_resources>
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