Data center air conditioning system and its application method based on lng cold energy application
A technology for data centers and air-conditioning systems, applied in air-conditioning systems, applications, heating and ventilation control systems, etc., can solve the problems of waste of cold energy and the impact of the surrounding seawater ecological environment, so as to reduce energy consumption, reduce impact, and reduce energy consumption Effect
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Embodiment 1
[0040] Embodiment one, see figure 1 , a data center air-conditioning system based on the application of LNG cold energy, including an LNG liquid storage tank 1, in this embodiment, the refrigerant is EG or ethylene glycol, the first heat exchanger 2 is an LNG / refrigerant heat exchanger, and the second The second heat exchanger 5 adopts an air-conditioning heat exchange refrigeration system. The LNG liquid storage tank 1 of this system is usually installed in the port, and the first heat exchanger 2 is installed near the port. The LNG liquid storage tank 1 and the first heat exchanger 2 are connected by pipelines. Considering that the wall thickness of the cryogenic pipe is 6mm, a thicker pipe can be selected according to the actual situation or geographical environment. In order to realize the stepwise heating and control of the refrigerant, the present embodiment is provided with two low-temperature refrigerant storage tanks 3, and the two low-temperature refrigerant storage...
Embodiment 2
[0063] Embodiment two, the difference with embodiment one is:
[0064] see image 3 , The LNG liquid storage tank 1 is also provided with support feet 9 . The supporting foot 9 includes a lower section 91 and an upper section 92 . The lower end of the lower section 91 is provided with a mounting seat 911 . The upper end of the lower section 91 is slidably sleeved on the lower end of the upper section 92 . The lower section 81 is provided with a damping spring 93 supporting the upper section 92 . The upper end of the upper section 92 is provided with a connecting ring 921 . An inner ring 922 passes through the connecting ring 921 . The inner ring 922 is connected with the connecting ring 921 through the rubber ring 7 . The inner ring 922 is pierced with connecting pins 923 . The connection pin 923 is connected with the LNG liquid storage tank 1 together.
[0065] see Figure 4 , The inner peripheral surface of the rubber ring 7 is provided with several blind holes 71 d...
Embodiment 3
[0070] Embodiment three, the difference with embodiment two is:
[0071] see Figure 8 , The supporting foot 9 is also provided with a driving mechanism 6 . The inner ring 5 is rotatably connected to the rubber ring 7 , and the rubber ring 7 is fixedly connected with the connecting ring 921 .
[0072] The drive mechanism 6 includes a ratchet 61 , a pawl 62 for driving the ratchet, and a drive lever 63 . The ratchet 61 is coaxially connected with the inner ring 922 . The ratchet 61 is integrated with the inner ring 922 . The pawl 62 is fixedly connected to one end of the driving rod 63 . The upper section 92 is provided with a sliding hole 924 . The other end of the driving rod 63 can slide through the sliding hole 924 two-dimensionally. The lower end of the driving rod 63 is slidably hooked to the lower section 91 along the radial direction of the connecting ring 921 (see image 3 ) are fixed together. The driving rod 63 is provided with a storage hole 64 . There are ...
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