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Gas-liquid synergistic temperature adjusting mechanism
The gas-liquid synergistic temperature adjusting mechanism comprises a first pipe body and a second pipe body, the first pipe body is arranged in the second pipe body, part of the outer pipe wall of the first pipe body is tightly attached to the inner pipe wall of the first pipe body, and a gap exists between the first pipe body and the second pipe body; and a gap between the first pipe body and the second pipe body is used for circulating gas. The gas-liquid synergistic temperature adjusting mechanism has the following beneficial effects that the temperature is adjusted by coordinating gas and liquid, so that the whole mechanism can adjust the indoor temperature more quickly and efficiently when the indoor temperature is adjusted.
本申请公开了气液协同调温机构,包括第一管体以及第二管体,所述第一管体设置于第二管体内,所述第一管体的部分外管壁贴紧第一管体的内管壁,且第一管体与第二管体之间存在间隙,所述第一管体与第二管体之间的间隙用于流通气体。本种气液协同调温机构具有如下有益效果:通过协调使用气体与液体协调使用来调节温度,使得整个机构在调节室内温度时可以更快速高效地调整室内温度。
Gas-liquid synergistic temperature adjusting mechanism
The gas-liquid synergistic temperature adjusting mechanism comprises a first pipe body and a second pipe body, the first pipe body is arranged in the second pipe body, part of the outer pipe wall of the first pipe body is tightly attached to the inner pipe wall of the first pipe body, and a gap exists between the first pipe body and the second pipe body; and a gap between the first pipe body and the second pipe body is used for circulating gas. The gas-liquid synergistic temperature adjusting mechanism has the following beneficial effects that the temperature is adjusted by coordinating gas and liquid, so that the whole mechanism can adjust the indoor temperature more quickly and efficiently when the indoor temperature is adjusted.
本申请公开了气液协同调温机构,包括第一管体以及第二管体,所述第一管体设置于第二管体内,所述第一管体的部分外管壁贴紧第一管体的内管壁,且第一管体与第二管体之间存在间隙,所述第一管体与第二管体之间的间隙用于流通气体。本种气液协同调温机构具有如下有益效果:通过协调使用气体与液体协调使用来调节温度,使得整个机构在调节室内温度时可以更快速高效地调整室内温度。
Gas-liquid synergistic temperature adjusting mechanism
气液协同调温机构
XIA QING (Autor:in) / DU JUN (Autor:in) / SHEN YUFENG (Autor:in) / HAN ANLAI (Autor:in) / WANG SHIJIE (Autor:in) / LU BINJIE (Autor:in) / GAN ZHIJIE (Autor:in) / XU HAICONG (Autor:in) / ZHU ZHIHAO (Autor:in)
24.01.2023
Patent
Elektronische Ressource
Chinesisch