Search alternatives:
significant force » significant source (Expand Search), significant sources (Expand Search), significant concern (Expand Search)
lower decrease » larger decrease (Expand Search), linear decrease (Expand Search), teer decrease (Expand Search)
force decrease » fold decrease (Expand Search), forces increased (Expand Search)
_ decrease » _ decreased (Expand Search), _ decreasing (Expand Search)
significant force » significant source (Expand Search), significant sources (Expand Search), significant concern (Expand Search)
lower decrease » larger decrease (Expand Search), linear decrease (Expand Search), teer decrease (Expand Search)
force decrease » fold decrease (Expand Search), forces increased (Expand Search)
_ decrease » _ decreased (Expand Search), _ decreasing (Expand Search)
-
1
-
2
-
3
-
4
Shearing forces in the tension zone.
Published 2025“…The results demonstrate that under identical loading conditions, the maximum displacement of the VIPF (20.63 mm) is 23.8% lower than that of the VPF (27.06 mm). The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
-
5
Shearing force in the pressure zone.
Published 2025“…The results demonstrate that under identical loading conditions, the maximum displacement of the VIPF (20.63 mm) is 23.8% lower than that of the VPF (27.06 mm). The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
-
6
Axial force in the pressure zone.
Published 2025“…The results demonstrate that under identical loading conditions, the maximum displacement of the VIPF (20.63 mm) is 23.8% lower than that of the VPF (27.06 mm). The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
-
7
Axial forces in the tension zone.
Published 2025“…The results demonstrate that under identical loading conditions, the maximum displacement of the VIPF (20.63 mm) is 23.8% lower than that of the VPF (27.06 mm). The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
-
8
-
9
-
10
-
11
-
12
-
13
-
14
-
15
-
16
Sketch of forces on vertical and inclined piles.
Published 2025“…The results demonstrate that under identical loading conditions, the maximum displacement of the VIPF (20.63 mm) is 23.8% lower than that of the VPF (27.06 mm). The outer ring of inclined piles in the VIPF significantly enhances structural stiffness through spatial synergy, achieving uniform load distribution and effective redistribution of pile-body internal forces. …”
-
17
-
18
-
19
-
20