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This paper presents a summary of strategies and techniques for designing, optimizing and fabricating salt pills for both low- and mid-temperature applications.
This paper presents a solar collector/storage system designed for mid-temperature application.
And the standard test method mainly used to predict the service lifetime for low- to mid- temperature applications.
Superficial and deep temperature changes depend on the application procedure, initial temperature, application time, application area, and location [ 33].
These combined effects resulted in a peak zT of ∼0.92 at 710 K for the hot-pressed Ag0.01Sb1.85In0.15Te3 alloy, whereas the average zTav of 0.8 was obtained in the temperature range of 500 710 K, indicating a great potential of the alloy for application in mid-temperature thermoelectric power generation.
In the previous studies, metal-Al2O3 solar absorbers are stable in a mid-temperature range between 250 and 350 °C of solar thermal applications [1, 28, 29].
Based on the operational temperature ranges, solar absorber materials for solar thermal applications can be classified as: (1) low temperature (T < 100 °C), (2) mid-temperature (100 °C < T < 400 °C) and (3) high temperature (T > 400 °C) [1].
It is a mid-temperature tolerant and moderate-yielding strain.
All the above-mentioned benefits make the minute Cd-doped β-Zn4Sb3 compound prepared by the MS-SPS technique a promising candidate for mid-range temperature thermoelectric power generation applications.
NOTE ON MID-CAREER FELLOWSHIPS: Please note that 2005-2006 mid-career fellowship applications are currently suspended.
The test results confirm the fact that Stirling engines driven by mid-high temperature waste gases are able to achieve a valuable output power for engineering application.
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