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L. Wang

4 papers hereh-index 9184 citations19 works total

Matching runs newest-first, so older work may not be attached to this profile yet.

author position
  • first author1
  • middle author1
  • last author2

Across the 4 of 4 papers where every author was matched, so the position is known.

fields
  • physics.flu-dyn2
  • cs.LG1
  • physics.pop-ph1
same name
  • L. Wang — 122 papers, h 6
  • L. Wang — 101 papers, h 4
  • L. Wang — 29 papers, h 7
  • L. Wang — 27 papers, h 16
  • L. Wang — 17 papers, h 1
  • L. Wang — 17 papers, h 45

Either other researchers who publish under this name, or the same person where the external sources have not merged their records.

identity via Semantic Scholar / OpenAlex

collaborators

4 papers

physics.flu-dyn2026

FLUME-FNO: data-efficient and scalable prediction of 3D wind and temperature fields in unseen urban morphologies

Shaoxiang Qin, Theodore Potsis, Dongxue Zhan +3

Urban microclimate, encompassing wind and temperature fields shaped by building geometry, significantly impacts energy consumption, pedestrian winds, pollutant dispersion, urban he…

physics.pop-ph2026

The Rise of Quantum Computing -- Take a BITE for Built Environment and Urban Microclimate Research

Liangzhu Leon Wang, Huiheng Liu, Honghao Fu +3

Quantum computing is a new approach to computation that utilizes superposition, entanglement, interference, and tunneling to solve problems too complex for classical computers. Thi…

cs.LG2025

Generalization of Urban Wind Environment Using Fourier Neural Operator Across Different Wind Directions and Cities

Cheng Chen, Geng Tian, Shaoxiang Qin +6

Simulation of urban wind environments is crucial for urban planning, pollution control, and renewable energy utilization. However, the computational requirements of high-fidelity c…

physics.flu-dyn2025

Using Diffusion Models for Reducing Spatiotemporal Errors of Deep Learning Based Urban Microclimate Predictions at Post-Processing Stage

Sepehrdad Tahmasebi, Geng Tian, Shaoxiang Qin +3

Computational fluid dynamics (CFD) is a powerful tool for modeling turbulent flow and is commonly used for urban microclimate simulations. However, traditional CFD methods are comp…

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