Experimental device for studying the evolution law of heat storage and release of soil on the top of underground space
An experimental device and underground space technology, which is applied in the field of experimental devices for long-term heat storage and release characteristics, can solve problems such as the difficulty in measuring soil heat and humidity change parameters, and achieve the effects of overcoming impracticality, direct effect, and simplifying the simulation device
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Embodiment
[0044] Example: working conditions when the wind speed near the wall is small
[0045] like figure 1 In the constant temperature and humidity air-conditioning room, the constant temperature and humidity air enters from the fan side of the thermal environment simulation duct 1, passes through the frequency conversion fan 1-1, heater 1-2, and humidifier 1-3 in turn, and enters the soil and the outdoor environment. The heat and humidity exchange area is discharged to the indoor air outlet through the outlet of the thermal environment simulation air duct 1; the air-conditioning box in the constant temperature and humidity room can ensure the lower air temperature and air humidity regulation at the same time, and the heater 1-2 can provide higher air temperature. The air temperature, the humidifier 1-3 can further adjust the air humidity, and the frequency conversion fan 1-1 can adjust the airflow speed; figure 2 Open the cut-off valve 2-4 in the middle spray device 2, turn on th...
Embodiment 2
[0059] Example 2: Working condition when the wind speed near the wall is relatively high
[0060] Carry out following working condition adjustment according to embodiment 1:
[0061]When the wind speed near the wall is high, the air inside the wall of the underground space is forced to flow, and the temperature difference is kept constant, according to the Nusselt criterion number Nu=0.664Re under the condition of the swept flat plate 1 / 2 ·Pr 1 / 3 (Re Reynolds criterion number, dimensionless number; Pr Prandtl criterion number, dimensionless number.) and geometric ratio to determine the flow velocity ratio, the conversion of underground space and constant temperature water bath flow velocity conversion is shown in Table 3.
[0062] Table 3 Correspondence between underground space and constant temperature water bath flow rate conversion
[0063]
[0064] Note: Except for the above adjustments, other principles and implementation processes are the same as in Embodiment 1.
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