A cooling water pipe laying system for mass concrete temperature control
Patent Information
- Application Number
- CN202521958180.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-11
- Publication Date
- 2026-08-28
- Estimated Expiration
- 2035-09-11
AI Technical Summary
[0002]大体积混凝土施工是常见的混凝土结构形式,由于混凝土浇筑体量大,加之混凝土是热的不良导体,造成混凝土在浇筑完成后,由于内部水泥水化反应产生的热量不能及时耗散,内部温度升高,外部温度较低,造成混凝土内外温差增加,一旦超出混凝土的允许值,会造成混凝土产生温度裂缝,影响结构的正常使用
本实用新型提供一种大体积混凝土温控用冷却水管布设系统,所述冷却水管布设在大体积混凝土中,用于带走大体积混凝土施工期产生的热量,从而有效控制内外温差,所述冷却水管布设系统包括水箱、泵机、进水主管和左上进水管、左下进水管、右上进水管、右下进水管、左上回水管、左下回水管、右上回水管、右下回水管,通过该设置,仅设计一个泵机和进水主管,即可实现多路冷却水管进水设计,实现多路冷却供水,冷却水管水量通过循环系统进入水箱,实现水量的高效利用。
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Figure CN224693111U_ABST
Abstract
Claims
1. A cooling water pipe laying system for temperature control of large-volume concrete, wherein the cooling water pipes are laid in the large-volume concrete to remove heat generated during the construction period of the large-volume concrete, the large-volume concrete comprising a first pouring block and a second pouring block, the first pouring block and the second pouring block being arranged alternately, characterized in that: The cooling water pipe system includes a water tank, a pump, a main inlet pipe, an upper left inlet pipe, a lower left inlet pipe, an upper right inlet pipe, a lower right inlet pipe, an upper left return pipe, a lower left return pipe, an upper right return pipe, and a lower right return pipe. The pump is located in the water tank and is connected to the main inlet pipe. The main inlet pipe is connected to the upper left inlet pipe, the lower left inlet pipe, the upper right inlet pipe, and the lower right inlet pipe. The upper left inlet pipe and the lower left inlet pipe are connected to the upper left cooling water pipe and the lower left cooling water pipe, respectively. The cooling water pipe and the lower left cooling water pipe are respectively laid on the upper and lower layers of the first cast-in-place block, and are respectively connected to the upper left return water pipe and the lower left return water pipe; the upper right water inlet pipe and the lower right water inlet pipe are respectively connected to the upper right cooling water pipe and the lower right cooling water pipe, respectively. The upper right cooling water pipe and the lower right cooling water pipe are respectively laid on the upper and lower layers of the second cast-in-place block, and are respectively connected to the upper right return water pipe and the lower right return water pipe; the upper left return water pipe, the lower left return water pipe, the upper right return water pipe, and the lower right return water pipe are all connected to the water tank.
2. The cooling water pipe layout system for temperature control of large-volume concrete as described in claim 1, characterized in that: The water tank is located between the first and second cast-in-place blocks.
3. The cooling water pipe layout system for temperature control of large-volume concrete as described in claim 1, characterized in that: The upper left cooling water pipe and the lower left cooling water pipe are respectively located at 1 / 3 and 2 / 3 of the thickness of the first cast block; the upper right cooling water pipe and the lower right cooling water pipe are respectively located at 1 / 3 and 2 / 3 of the thickness of the second cast block.
4. The cooling water pipe layout system for temperature control of large-volume concrete as described in claim 1, characterized in that: The upper left cooling water pipe, the lower left cooling water pipe, the upper right cooling water pipe, and the lower right cooling water pipe are arranged in a serpentine pattern. The upper left inlet pipe, the lower left inlet pipe, the upper right inlet pipe, the lower right inlet pipe, the upper left return pipe, the lower left return pipe, the upper right return pipe, and the lower right return pipe are all located on the side of the first or second casting block near the water tank.