A platform for research: civil engineering, architecture and urbanism
Concrete cooling system based on pulsating heat pipe
The invention discloses a concrete cooling system based on a pulsating heat pipe. The concrete cooling system comprises a temperature lowering system and a cooling water circulation system and can bewidely applied to the field of concrete temperature lowering, the temperature lowering effect is improved, hydration heat is recycled, and energy saving and emission reduction are achieved. The temperature lowering system is mainly composed of a heat conduction inner pipe, a heat conduction outer pipe and the pulsating heat pipe, the pulsating heat pipe can be effectively utilized to cooperate with water circulation to achieve the effects of lowering the temperature of the interior of concrete and balancing the temperature difference. The cooling water circulation system comprises a water tank, a temperature sensor, an automatic valve and a sealing ring, can provide an efficient condensation end for the heat pipe and can also recycle the hydration heat to achieve multifunctional utilization of cooling water. Through the concrete cooling system, the temperature of the interior of the concrete can be quickly and automatically lowered, the temperature difference is balanced, the hydrationheat is recycled, and the efficient, energy saving and environment protecting purposes are achieved.
本发明公开了一种基于脉动热管的混凝土冷却系统,包括降温系统和冷却水循环系统,可以广泛应用于混凝土降温领域,提高降温效果,回收水化热,节能减排。其中降温系统主要由导热内、外管,脉动热管组成,可以有效的利用脉动热管,配合水循环实现降低混凝土内部温度和平衡温差的效果。冷却水系统包括水箱,温度传感器,自动阀门,密封环,既可以为热管提供高效的冷凝端又能回收水化热实现冷却水的多功能利用。本系统能够快速、自发的冷却混凝土内部温度,平衡温差和回收水化热,达到高效、节能、环保的目的。
Concrete cooling system based on pulsating heat pipe
The invention discloses a concrete cooling system based on a pulsating heat pipe. The concrete cooling system comprises a temperature lowering system and a cooling water circulation system and can bewidely applied to the field of concrete temperature lowering, the temperature lowering effect is improved, hydration heat is recycled, and energy saving and emission reduction are achieved. The temperature lowering system is mainly composed of a heat conduction inner pipe, a heat conduction outer pipe and the pulsating heat pipe, the pulsating heat pipe can be effectively utilized to cooperate with water circulation to achieve the effects of lowering the temperature of the interior of concrete and balancing the temperature difference. The cooling water circulation system comprises a water tank, a temperature sensor, an automatic valve and a sealing ring, can provide an efficient condensation end for the heat pipe and can also recycle the hydration heat to achieve multifunctional utilization of cooling water. Through the concrete cooling system, the temperature of the interior of the concrete can be quickly and automatically lowered, the temperature difference is balanced, the hydrationheat is recycled, and the efficient, energy saving and environment protecting purposes are achieved.
本发明公开了一种基于脉动热管的混凝土冷却系统,包括降温系统和冷却水循环系统,可以广泛应用于混凝土降温领域,提高降温效果,回收水化热,节能减排。其中降温系统主要由导热内、外管,脉动热管组成,可以有效的利用脉动热管,配合水循环实现降低混凝土内部温度和平衡温差的效果。冷却水系统包括水箱,温度传感器,自动阀门,密封环,既可以为热管提供高效的冷凝端又能回收水化热实现冷却水的多功能利用。本系统能够快速、自发的冷却混凝土内部温度,平衡温差和回收水化热,达到高效、节能、环保的目的。
Concrete cooling system based on pulsating heat pipe
基于脉动热管的混凝土冷却系统
ZHANG DONGWEI (author) / ZHOU JUNJIE (author) / ZHANG FAN (author) / JIANG ERHUI (author) / GUO CHAXIU (author) / MA XINLING (author) / GU XIN (author)
2020-10-02
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
E02D
FOUNDATIONS
,
Gründungen
/
F28D
Wärmetauscher, soweit in keiner anderen Unterklasse vorgesehen, in denen die Wärmetauschmittel nicht in direkte Berührung miteinander kommen
,
HEAT-EXCHANGE APPARATUS, NOT PROVIDED FOR IN ANOTHER SUBCLASS, IN WHICH THE HEAT-EXCHANGE MEDIA DO NOT COME INTO DIRECT CONTACT
Numerical Investigation of a Pulsating Heat Pipe Using Different Nanofluids for Electronic Cooling
Springer Verlag | 2025
|Numerical Investigation of a Pulsating Heat Pipe Using Different Nanofluids for Electronic Cooling
Springer Verlag | 2024
|Numerical Analysis of Pulsating Heat Pipe Based on Separated Flow Model
British Library Online Contents | 2005
|