A greenhouse cultivation tank system with damping effect

By installing windproof and earthquake-resistant components in the greenhouse, using inclined connecting rods and gear rack structures to offset wind and seismic forces, and combining this with vibration isolators to stabilize the cultivation trough, the instability of the greenhouse during strong winds and earthquakes is solved, ensuring the safety of crops and soil.

CN119547673BActive Publication Date: 2026-06-02酒泉市农业科学研究院

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
酒泉市农业科学研究院
Filing Date
2024-12-12
Publication Date
2026-06-02

AI Technical Summary

Technical Problem

Existing greenhouse cultivation trough systems lack wind resistance in strong winds and are easily blown away. Furthermore, the excessive steel cables hinder farmers' operations. Additionally, the structure is not stable enough during earthquakes, which can easily cause the cultivation troughs to shake and crops or soil to fall off.

Method used

The design incorporates windproof and shockproof components. The windproof component uses inclined connecting rods and spring structures to counteract wind force, while the shockproof component uses gear and rack structures to counteract seismic force. Combined with GTT vibration isolators and metal-rubber vibration isolators, the cultivation trough is stabilized to ensure stability during strong winds and earthquakes.

Benefits of technology

It effectively prevents strong winds from blowing up the greenhouse, reduces interference from steel cables, improves structural stability, avoids crops or soil falling off, and enhances the safety and stability of the greenhouse.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of agricultural facilities, in particular to a greenhouse cultivation tank system with damping effect, comprising: a plurality of shed columns and a plurality of shed beams connected to the top of the shed columns, a plurality of shed frames are connected to the top of the shed beams, a plurality of cultivation frames are connected between the plurality of shed beams, and a plurality of cultivation assemblies are connected to the bottom of the cultivation frames; the windproof assembly is connected between the shed column at the end and the corresponding shed frame; the anti-seismic assembly is connected between the adjacent two shed columns; the windproof assembly makes the overall downward force greater than the upward force of the wind, so as to avoid the greenhouse from being blown up by the wind, and the anti-seismic assembly ensures the stability of the greenhouse during the earthquake, so as to avoid the cultivation tank from shaking and the crops or soil in the cultivation tank from falling due to shaking.
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