PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
October 15, 2025Geoscientific model development5 citationsOpen Access

MLUCM BEP + BEM: an offline one-dimensional multi-layer urban canopy model based on the BEP + BEM scheme

View Full Paper
GPGianluca PappaccogliAZAndrea ZonatoAMAlberto Martilli

Key Points

  • MLUCM BEP + BEM reliably reproduces various fluxes, including latent and momentum fluxes.
  • Validation against Urban-PLUMBER data shows notable performance improvements over established models.
  • Flexibility and efficiency make the model suitable for assessing urban overheating and energy demands.
  • Refinements in tree-soil moisture dynamics are needed to improve surface energy budget accuracy.

Abstract

Abstract. The MLUCM BEP + BEM model advances urban microclimate modelling by combining a multi-layer canopy approach with Building Effect Parameterization (BEP) and a Building Energy Model (BEM). It includes updated turbulent length scales and eddy diffusivity coefficients that account for atmospheric stability, along with explicit representation of urban vegetation, such as street trees and green spaces. The model runs offline with low computational demands, making it suitable for standalone use, integration with climate projections, and long-term simulations to evaluate emission scenarios and adaptation strategies. Validation against data from the Urban-PLUMBER project at a suburban site in Preston (Melbourne, Australia) demonstrates that MLUCM BEP + BEM reliably reproduces shortwave (SWup) and longwave (LWup) radiation, as well as latent (Qle), sensible (Qh), and momentum (Qtau) fluxes. Its overall performance is on par with, and in several cases surpasses, that of other established urban models with particularly notable improvements in the simulation of momentum flux (Qtau). Some refinements are still needed, particularly in modelling tree-soil moisture dynamics to reduce surface energy budget imbalances. Thanks to its flexibility and efficiency, MLUCM BEP + BEM is well-suited for assessing urban overheating, building energy demand, and the effectiveness of mitigation strategies such as green roofs, cool materials, and photovoltaic systems under various future climate scenarios.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Pappaccogli et al. (2025) studied this question.

synapsesocial.com/papers/68efbd16d61273c8652d7fb6https://doi.org/10.5194/gmd-18-7129-2025
Ask AI
Helpful
Bookmark
Share
View Full Paper