返回
A variable gradient descent shape optimization method for transition tee resistance reduction
DOI:10.1016/j.buildenv.2023.110735.png)
摘要
En 中文
In this paper, a local component optimization method is proposed for reducing resistance and consumption in building transmission and distribution systems. The gradient descent method is used to investigate energy dissipation minimization constrained by the Navier-Stokes equation with nonlinear boundary conditions, and the optimality conditions of the shape are derived from the shape optimization problem using the function space parameterization method. The shape of the upper wall of the transition tee is iteratively optimized until the optimal shape with the minimum energy dissipation is obtained. The derivative of the free boundary shape of the transition tee and the objective function are proposed, and the normalized wall height of the transition tee with different area ratios are provided; these results can enable the adaptation of various sizes of transition tees in engineering to achieve air supply conditions that meet the engineering requirements. In this paper, the flow field and pressure loss of the optimized and conventional tees are compared, and the optimized tee performance improvement and energy saving potential are evaluated. The optimized transition tee has a resistance reduction rate of 6 similar to 99% for the straight duct and 2-98% for the branch duct under different area ratios and flow ratios. Our method has the advantages of being more accurate, flexible and general and provides a novel method for the resistance optimization design of building transmission and distribution systems.
Keyword:
Ventilation
Transition tee
Shape optimization
Resistance
期刊
IF:
7.6
论文数:
1.3W
被引数:
6.6W
机构
暂无机构信息
引用论文
Acute Effect of Epidermal Growth Factor on Phosphate Diffusion across Intestinal Mucosa of Hens using the Ussing Chamber System使用Ussing chamber系统研究表皮生长因子对母鸡肠黏膜磷酸盐扩散的急性效应
Global effect of local skin friction drag reduction in spatially developing turbulent boundary layer
Study on local drag reduction effects of wedge-shaped components in elbow and T-junction close-coupled pipes
BUILDING SIMULATION
IF5.9
Impact of installation faults in air conditioners and heat pumps in single-family homes on US energy usage
APPLIED ENERGY
IF11

