A construction method of special-shaped tree holes based on the wind rose diagram of the tree planting area
A construction method and rose diagram technology, applied in planting methods, excavation/covering trenches, data processing applications, etc., can solve problems such as the influence of plant growth status, and achieve the effects of reducing human intervention, saving consumption, and saving support devices
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Embodiment 1
[0055] Embodiment one, such as Figure 4 As shown, it is the wind direction rose diagram of Shanghai, which has relatively large wind direction frequencies at 292.5°, 315° and 337.5°. Since the three relatively large wind frequency directions are adjacent, the middle direction, namely 315°, is selected as the prevailing direction. Wind frequency direction θ max , and then remove the maximum wind direction frequency f max and the larger prevailing wind direction frequency, the remaining wind direction frequencies are averaged to obtain the basic wind direction frequency f 0 , the distance between the apex of the isosceles triangle of the prevailing wind direction tree hole and the center of the base tree hole θ max =315°, such as Figure 5 Shown is the obtained tree hole configuration diagram in Shanghai.
Embodiment 2
[0056] Embodiment two, such as Figure 6 As shown, it is the wind direction rose diagram of Guangzhou, where 0°, 90° and 315° are the larger wind direction frequencies. Since the three larger wind frequency directions are not adjacent, the prevailing wind frequency direction θ max to three, and then remove the prevailing wind direction frequency f max and the larger prevailing wind direction frequency, the remaining wind direction frequencies are averaged to obtain the basic wind direction frequency f 0 , the distance between the apex of the isosceles triangle of the prevailing wind direction tree hole and the center of the base tree hole θ max =0°, 90°, 315°, such as Figure 7 Shown is the obtained tree hole configuration diagram in Guangzhou.
Embodiment 3
[0057] Embodiment three, Figure 8 As shown, it is the wind direction rose diagram of Hohhot, which has higher wind direction frequency at 22.5°, 45°, 225°, and 247.5°. Since 22.5° is adjacent to 45°, the frequency of wind direction is higher in these two directions 45° as the prevailing wind frequency direction θ max ;, 225° and 247.5° are also adjacent, in these two directions, 247.5° with a higher wind direction frequency is selected as the prevailing wind frequency direction θ max , after removing the wind direction frequencies in the above four directions, calculate the average value of the remaining wind direction ratings to obtain the basic wind direction frequency f 0 , the distance between the apex of the isosceles triangle of the prevailing wind direction tree hole and the center of the base tree hole θ max =45°, 247.5°, such as Figure 9 Shown is the obtained tree hole configuration map of Hohhot.
[0058] preferred, such as Figure 1-3 As shown, the special-...
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