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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.
The working frequency, charging pressure and mechanical resistance do not substantially influence the efficiency and power capacity, when varied within a limited range.
The orthogonal experiment design considered three experimental factors, i.e. the charging pressure and the heater powers in the two stages, which varied on five different levels, respectively.
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.
Similar(42)
The effects of heat transfer mechanisms on the charging process in metal hydride reactors are studied under various charging pressures.
The third reactor shows the lowest temperature increase with the fastest charging time under all charging pressures investigated.
Finally these optimized parameters are verified under different charging pressures, driving amplitudes, and working gases, providing references for optimal design of thermo-acoustic refrigerator driven at large amplitude.
The performances of two coupled pulse tube cryocoolers were investigated at different operating frequencies from 50 Hz to 60 Hz and different charging pressures from 2.0 MPa to 3.2 MPa and its reject temperature dependence was observed in the range of 290 320 K by the test bench.
The peak-to-peak value of the acoustic pressure was 0.02 MPa at the 1.8 MPa charged pressure of helium.
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CEO of Professional Science Editing for Scientists @ prosciediting.com