Quantification of residential design parameters’ effects on the outdoor wind environment using orthogonal experimental design (OED (cas 12778-07-3)) and numerical simulation
-
Add time:08/29/2019 Source:sciencedirect.com
This paper selected typical flat and tower residential buildings in Beijing, China, to assess comfortable outdoor wind environments in summertime. Numerical analysis was carried out to evaluate design parameters that could influence the outdoor pedestrian-level wind environment during the summer. A total of twenty-seven valid cases using an orthogonal array, L27 (313) orthogonal experimental design (OED) were selected. OED analysis showed significant probability and, therefore, the design parameters’ effects on the outdoor wind environment were quantitatively characterized at the pedestrian level. The conclusions were as follows: 1) design factors affecting the outdoor wind environment were found to be floor area ratio, façade direction, and greening rate; 2) the significance probability of design factors ranked highest to lowest in the order of greening rate > floor area ratio > façade direction > building arrangement. The results of such an evaluation can be used as an index for the planning and design process and for feedback of green building projects.
We also recommend Trading Suppliers and Manufacturers of OED (cas 12778-07-3). Pls Click Website Link as below: cas 12778-07-3 suppliers
Prev:ReviewReview of China policy of OED (cas 12778-07-3) sea use management
Next:Improving the estimation quality of parameters in kinetic models for hydriding/dehydriding reactions: An OED (cas 12778-07-3) study) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- LES field model-based fire accident reconstruction with the OED (cas 12778-07-3) method and its experimental validation09/02/2019
- Modifying the release of leuprolide from spray dried OED (cas 12778-07-3) microparticles09/01/2019
- Optimization method for building envelope design to minimize carbon emissions of building operational energy consumption using orthogonal experimental design (OED (cas 12778-07-3))08/31/2019
- Improving the estimation quality of parameters in kinetic models for hydriding/dehydriding reactions: An OED (cas 12778-07-3) study08/30/2019
- ReviewReview of China policy of OED (cas 12778-07-3) sea use management08/28/2019
- Osmotically enhanced dewatering-reverse osmosis (OED (cas 12778-07-3)-RO) hybrid system: Implications for shale gas produced water treatment08/27/2019


