Aerodynamic Performance Optimization of Vehicle-Mounted Photovoltaic System for Net Power Maximization
LUO Yutao, LIN Zhiqiang
School of Mechanical and Automotive Engineering/Guangdong Provincial Key Laboratory of Automotive,South China University of Technology,Guangzhou 510640,Guangdong,China
LUO Yutao, LIN Zhiqiang. Aerodynamic Performance Optimization of Vehicle-Mounted Photovoltaic System for Net Power Maximization[J]. Journal of South China University of Technology(Natural Science Edition), 2025, 53(11): 122-131.
Structure of foldable vehicle-mounted photovoltaic system"
Fig.1
Fig.2
Schematic diagrams of the installation of foldable vehicle-mounted photovoltaic system"
Fig.2
Fig.3
Computational domain"
Fig.3
Fig.4
Scale model of an SUV"
Fig.4
Fig.5
Schematic diagram of mesh refinement"
Fig.5
Table 1
Results of mesh independence verification"
编号
加密网格尺寸/mm
体网格数/106
Cd
C1
1层
2层
3层
4层
1
15
52
200
300
5.12
0.432
-0.010 0
2
10
52
200
300
8.71
0.415
-0.008 1
3
8
52
200
300
15.38
0.411
-0.008 0
4
6
30
150
300
36.63
0.412
-0.008 2
Table 1
Table 2
Impact of foldable vehicle-mounted photovoltaic system on vehicle aerodynamic performance"
车辆类别
Cd
FD/N
C1
FC/N
原型车
0.415
372.42
-0.008
-7.22
安装后
0.619
484.26
0.065
57.61
Table 2
Fig.6
Velocity streamline diagrams in the external flow field of the vehicle before and after the installation of foldable vehicle-mounted photovoltaic system"
Fig.6
Fig.7
Pressure contour map of foldable vehicle-mounted photovoltaic system"
Fig.7
Fig.8
Structure of the fairing"
Fig.8
Fig.9
Pressure contour map of the system after fairing installation"
Fig.9
Fig.10
Velocity streamline diagrams of foldable vehicle-mounted photovoltaic system"
Fig.10
Fig.11
Schematic diagram of optimized parameters"
Fig.11
Table 3
Factor setting and level number of orthogonal test"
参数
取值上限
取值下限
水平数
前倾角/(°)
70
10
4
后背角/(°)
60
0
3
系统高度/mm
200
100
3
Table 3
Table 4
Results and analysis of orthogonal test"
编号
前倾角/(°)
后背角/(°)
系统高度/mm
Cd
FD/N
Cl
FC/N
1
10
0
100
0.62
44.15
1.07
78.66
2
10
30
150
0.63
48.85
1.09
79.00
3
10
60
200
0.65
53.66
1.19
85.91
4
30
0
150
0.58
45.27
0.99
76.75
5
30
30
200
0.64
53.17
1.08
78.82
6
30
60
100
0.60
43.04
1.19
85.55
7
50
0
200
0.60
47.39
1.02
77.24
8
50
30
100
0.56
39.83
1.10
78.98
9
50
60
150
0.58
45.05
1.18
85.25
10
70
0
100
0.46
33.30
0.98
74.61
11
70
30
150
0.47
37.19
1.09
79.02
12
70
60
200
0.53
49.07
1.10
80.62
k1
48.89
42.53
40.08
k2
47.16
44.76
44.09
k3
44.09
47.70
50.82
k4
39.85
极差
9.04
5.17
10.74
最优方案
70
0
100
Table 4
Fig.12
Pareto Chart"
Fig.12
Fig.13
Main effects plots"
Fig.13
Fig.14
Velocity streamline diagram of the optimized system"
Fig.14
Fig.15
Velocity streamline diagram of the system with the bottom surface being closed"
Fig.15
Fig.16
Schematic diagram of the rear wing structure for vehicle-mounted photovoltaic system"
Fig.16
Table 5
Simulation results obtained at different rear wing angles"
尾翼角度/(°)
Cd
C1
尾翼角度/(°)
Cd
C1
40
0.343
-0.066
-10
0.360
0.049
30
0.347
-0.074
-20
0.358
0.048
20
0.360
0.017
-30
0.356
0.053
10
0.360
0.018
-40
0.357
0.066
0
0.356
0.050
Table 5
Fig.17
Fitting results of cubic spline interpolation"
Fig.17
Table 6
Simulation verification results of extreme points"
车速/(m·s-1)
尾翼角度/(°)
Cd
FD/N
C1
FC/N
15.0
33.96
0.343
93.86
-0.086
-23.16
20.0
33.96
0.343
166.71
-0.085
-42.20
25.0
33.96
0.343
259.23
-0.083
-55.22
30.0
33.96
0.343
375.56
-0.082
-78.65
35.0
33.96
0.343
510.86
-0.080
-129.00
40.0
33.96
0.343
666.84
-0.079
-151.65
Table 6
Table 7
Comparison of vehicle aerodynamic performance"
对象
Cd
FD/N
C1
FD/N
原型车
0.415
372.42
-0.008
-7.22
原型车+车载光伏系统
0.619
484.26
0.065
57.61
原型车+车载光伏系统+整流罩+尾翼
0.343
375.56
-0.082
-78.65
Table 7
Fig.18
Velocity streamline diagram in the external flow field of vehicle"
Fig.18
Table 8
Resistance on the vehicle at different speeds"
车速/(m·s-1)
原模型FD/N
安装无整流罩系统FD/N
总体优化后FD/N
5.0
10.35
13.45
10.46
7.5
23.25
30.27
23.52
10.0
41.38
53.81
41.82
15.0
93.11
121.07
93.86
20.0
165.53
215.23
166.71
25.0
258.63
336.30
260.48
30.0
35.0
40.0
372.42
506.91
662.08
484.26
659.14
860.92
375.56
510.86
666.84
Table 8
Table 9
Net power of the vehicle-mounted photovoltaic system before and after optimization"
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