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Environmental Sciences

D-Index
47
Citations
8433
World Ranking
5787
National Ranking
446

Overview

Lee Chapman is affiliated with the University of Birmingham in the United Kingdom. Their research primarily lies within the field of Environmental Science, with a focus on subfields such as Health, Toxicology and Mutagenesis, Environmental Engineering, Global and Planetary Change, Transportation, and Astronomy and Astrophysics.

Their work spans several key topics including Urban Heat Island Mitigation, Urban Green Space and Health, Air Quality and Health Impacts, Land Use and Ecosystem Services, Air Quality Monitoring and Forecasting, Urban Transport and Accessibility, and Transportation Planning and Optimization.

Chapman has contributed to a variety of scientific publications with a particular emphasis on urban environments and their impact on climate and health. Recent papers include:

  • Telecommuting and other trips: an English case study, 2020, Journal of Transport Geography
  • Assessing urban greenery by harvesting street view data: A review, 2023, Urban forestry & urban greening
  • Urbanisation's contribution to climate warming in Great Britain, 2020, Environmental Research Letters
  • Field Calibration and Evaluation of an Internet-of-Things-Based Particulate Matter Sensor, 2022, Frontiers in Environmental Science
  • Can crowdsourcing increase the durability of an urban meteorological network?, 2023, Urban Climate

These publications appear in a range of scientific venues, with frequent contributions to:

  • Urban Climate
  • SSRN Electronic Journal
  • Frontiers in Sustainable Cities
  • Ground-based and Airborne Instrumentation for Astronomy IX
  • Journal of Transport Geography

Chapman often collaborates with other researchers including Emma Ferranti, Hannah Budnitz, Emmanouil Tranos, Christian Pfrang, and Nicole Cowell. These collaborators have worked with Chapman on multiple occasions, reflecting ongoing research partnerships.

Best Publications

  • Transport and climate change: a review

    Lee Chapman

  • Including the urban heat island in spatial heat health risk assessment strategies: a case study for Birmingham, UK

    Charlie J Tomlinson;Lee Chapman;John E Thornes;Christopher J Baker

  • Remote sensing land surface temperature for meteorology and climatology: a review

    Charlie J. Tomlinson;Lee Chapman;John E. Thornes;Christopher Baker

  • Crowdsourcing for climate and atmospheric sciences: current status and future potential

    Catherine Muller;Lee Chapman;Samuel Johnston;Chris Kidd;Chris Kidd

  • Sensors and the city : a review of urban meteorological networks

    Catherine L. Muller;Lee Chapman;C. S. B. Grimmond;Duick T. Young

  • Derivation of Birmingham's summer surface urban heat island from MODIS satellite images

    Charlie Tomlinson;Lee Chapman;John Thornes;Christopher Baker

  • Quantifying the Daytime and Night-Time Urban Heat Island in Birmingham, UK: A Comparison of Satellite Derived Land Surface Temperature and High Resolution Air Temperature Observations

    Juliana Antunes De Azevedo;Lee Chapman;Catherine Muller

  • The impact of climate change on winter road maintenance and traffic accidents in West Midlands, UK.

    Anna K. Andersson;Lee Chapman

  • Can the crowdsourcing data paradigm take atmospheric science to a new level? A case study of the urban heat island of London quantified using Netatmo weather stations

    Lee Chapman;Cassandra Bell;Simon Bell

  • Assessing the potential impact of climate change on transportation: the need for an interdisciplinary approach

    David Jaroszweski;Lee Chapman;Judith Petts

  • Modelling of road surface temperature from a geographical parameter database. Part 2: Numerical

    Lee Chapman;John E Thornes;Andrew V Bradley

  • Real-Time Sky-View Factor Calculation and Approximation

    L. Chapman;J. E. Thornes

  • The use of geographical information systems in climatology and meteorology

    Lee Chapman;John E. Thornes

  • Rapid determination of canyon geometry parameters for use in surface radiation budgets

    L. Chapman;J. E. Thornes;A. V. Bradley

  • The Birmingham Urban Climate Laboratory: an open meteorological test bed and challenges of the smart city

    Lee Chapman;Catherine L. Muller;Duick T. Young;Elliott L. Warren

  • Attacks on oil transport pipelines in Nigeria: A quantitative exploration and possible explanation of observed patterns

    Babatunde Anifowose;Damian M. Lawler;Dan van der Horst;Lee Chapman

  • Quantifying the effects of high summer temperatures due to climate change on buckling and rail related delays in south-east United Kingdom

    K. Dobney;C. J. Baker;A. D. Quinn;L. Chapman

  • Resistance and resilience – paradigms for critical local infrastructure

    Christopher D. F. Rogers;Christopher J. Bouch;Stephen Williams;Austin R. G. Barber

  • The value of Twitter data for determining the emotional responses of people to urban green spaces: A case study and critical evaluation:

    Helen Roberts;Jon Sadler;Lee Chapman

  • Increasing vulnerability to floods in new development areas: evidence from Ho Chi Minh City.

    Phan N. Duy;Lee Chapman;Miles Tight;Phan N. Linh

  • Urban heat & critical infrastructure networks: A viewpoint

    Lee Chapman;Juliana Antunes Azevedo;Tatiana Prieto-Lopez

Frequent Co-Authors

Chris Baker
Chris Baker University of Birmingham
Damian Lawler
Damian Lawler Coventry University
Clare Heaviside
Clare Heaviside University College London
C. S. B. Grimmond
C. S. B. Grimmond University of Reading
Xin Yao
Xin Yao Lingnan University
Chris Kidd
Chris Kidd Goddard Space Flight Center
Jon P. Sadler
Jon P. Sadler University of Birmingham
Paul Young
Paul Young Lancaster University
Judith Petts
Judith Petts University of Birmingham
Christopher D. F. Rogers
Christopher D. F. Rogers University of Birmingham

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