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The peak-to-peak value of the acoustic pressure was 0.02 MPa at the 1.8 MPa charged pressure of helium.
Experimental results showed that the CLHP could successfully realize the supercritical startup with an auxiliary heat load of 1.5 W, and there existed an optimum auxiliary heat load and charged pressure of the working fluid respectively, to achieve the maximum temperature drop rate of the primary evaporator during the supercritical startup.
In this work, extensive experimental studies on the supercritical startup and heat transport capability of a neon-charged CLHP integrated with a G-M cryocooler were carried out, where the effects of the auxiliary heat load applied to the secondary evaporator and charged pressure of the working fluid were investigated.
The CLHP could reach a maximum heat transport capability of 4.5 W over a distance of 0.6 m corresponding to the optimum charged pressure of the working fluid; however, the heat transport capability decreased with the increase of the auxiliary heat load.
The effect of reduced charged pressure of working fluid on the supercritical startup and heat transport capacity of the CLHP is not salient.
With the consideration of local technological know how and manufacturing infrastructure, this development works with a low charged pressure of 7 bar and uses air as a working fluid.
Similar(51)
The parameters such as the power consumption and the coefficient of performance (COP) are investigated under various rotating speeds and charged pressures.
The charging pressure was 15 kgf/cm2 and the operating frequency was 50 Hz.
A voltage stroke relationship, the effect of charging pressure on the performance and dynamic frequency response characteristics are investigated.
The performance of FPFD Stirling cryocooler is evaluated as a function of charging pressure and operating frequency.
According to the range analysis and variance analysis from the orthogonal experiments, the charging pressure was the most sensitive factor influencing the dynamic pressure amplitude and onset temperature.
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