A Method toward Real-Time CFD Modeling for Natural Ventilation

Loading...
Thumbnail Image

Date

2018-12-01

DOI

Open Access Location

Journal Title

Journal ISSN

Volume Title

Publisher

MDPI (Basel, Switzerland)

Rights

(c) 2018 The Author/s
CC BY 4.0

Abstract

Natural ventilation is often used as a passive technology to reduce building energy consumption. To leverage the rule-based natural ventilation control to more advanced control at multiple spatial scales, mathematical modeling is needed to calculate the real-time ventilation rate, indoor air temperatures, and velocities at high spatial resolution. This study aims to develop a real-time mathematical modeling framework based on computational fluid dynamics (CFD). The real-time concept is implemented by using real-time sensor data, e.g., wall surface temperatures as boundary conditions, while data assimilation is employed to implement real-time self-calibration. The proof of concept is demonstrated by a case study using synthetic data. The results show that the modeling framework can adequately predict real-time ventilation rates and indoor air temperatures. The data assimilation method can nudge the simulated air velocities toward the observed values to continuously calibrate the model. The real-time CFD modeling framework will be further tested by the real-time sensor data once building construction is fully completed.

Description

Keywords

zero energy, natural ventilation, sensor network, data assimilation, nudging

Citation

Wu W, Wang B, Malkawi A, Yoon N, Sehovic Z, Yan B. (2018). A method toward real-time CFD modeling for natural ventilation. Fluids. 3. 4.

Collections

Endorsement

Review

Supplemented By

Referenced By

Creative Commons license

Except where otherwised noted, this item's license is described as (c) 2018 The Author/s