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    <title>DSpace Collection:</title>
    <link>http://210.212.227.212:8080/xmlui/handle/123456789/597</link>
    <description />
    <pubDate>Wed, 27 May 2026 20:58:37 GMT</pubDate>
    <dc:date>2026-05-27T20:58:37Z</dc:date>
    <item>
      <title>INVESTIGATION ON THE CAPACITANCE FLOWMETER &amp; DEVELOPMENT OF VOID FRACTION SENSOR FOR CRYOGENIC TWO-PHASE FLOW</title>
      <link>http://210.212.227.212:8080/xmlui/handle/123456789/599</link>
      <description>Title: INVESTIGATION ON THE CAPACITANCE FLOWMETER &amp; DEVELOPMENT OF VOID FRACTION SENSOR FOR CRYOGENIC TWO-PHASE FLOW
Authors: Archana, Mohan; Mathew, Skaria
Abstract: Cryocoolers are devices that produce very low temperatures and provide adequate amount of&#xD;
cooling power at a specific location and hence can replace the conventional cryogenic fluids.&#xD;
The main difference between cryocoolers and cryogenic fluids is that cryocoolers can produce&#xD;
refrigeration at various low temperatures, while cryogenic fluids only provide refrigeration at&#xD;
specific temperatures, namely their boiling points.&#xD;
Cryocoolers can be classified into different types based on the heat exchangers used in them.&#xD;
They are regenerative and recuperative types. Regenerative type cryocoolers are further&#xD;
classified into three types namely, Stirling, Gifford McMahon (GM) and Pulse Tube.&#xD;
The CTI GM type cryocooler (Model: Cryodyne, Number:350C) had been chosen in our&#xD;
studies to understand its design, working and also to reverse engineer its development. One&#xD;
could learn the assembly of the system and also how it can be dismantled without damaging&#xD;
the components. After preparing the dimensional drawing of the displacer, Bakelite has been&#xD;
used for its fabrication, since it forms an equivalent substitute for the original Micarta material.&#xD;
The newly fabricated displacer housing was filled with the original regenerator materials and&#xD;
assembled into the coldhead housing. The temperature sensors were incorporated for the first&#xD;
and second stage cold heads. The system was tested for its performance to determine its lowest&#xD;
temperature reached.&#xD;
The regenerator materials and the sealings form the crucial components for the improved&#xD;
performance of the cryocooler. Both Teflon split rings and Rulon split rings have been used as&#xD;
sealings in our studies. Presently second stage temperature ~11.5K has been measured with&#xD;
lead as the regenerator material, with a water cooled 3kW helium compressor. On the other&#xD;
hand, with 1.5kW helium compressor, a temperature of 14.7K has been measured with lead as&#xD;
the regenerator material. With the same helium compressor, temperatures of 15.48K and&#xD;
19.45K have been measured with Holmium copper and Erbium Nickel as regenerator materialrespectively. Since the above values are higher than those of with Lead as regenerator, we&#xD;
suspect the above regenerator materials have aged and are not performing satisfactorily.&#xD;
The first stage temperatures have been measured as 75.96 K and 58.93 K for Holmium copper&#xD;
and Erbium Nickel as second stage regenerator materials respectively. The first stage&#xD;
regenerator material used in the setup is copper meshes (&lt; 200 mesh size).&#xD;
We have successfully designed and fabricated the displacer housing of the GM cryocooler&#xD;
system. Experiment have been performed using both labyrinth and non-labyrinth type housing.&#xD;
The performance of the system with indigenously designed displacer is quite satisfactory.&#xD;
Also, the theoretical analysis of the single stage GM Cryocooler has been attempted using the&#xD;
open-source regions software. By this analysis one can evaluate the cooling power, COP and&#xD;
inefficiency of the system as a function of various design and operational parameters.&#xD;
Following are the outcomes of the project.&#xD;
1. Complete design drawings of the first and second stage displacer along with its housing.&#xD;
2. Both Labyrinth type and non-labyrinth type displacers I have been designed, fabricated and&#xD;
tested.&#xD;
3. Teflon silly rings are formed to perform better than the plastic sealing rings&#xD;
The results indicate that the performance of the regenerator materials such as Holmium Copper&#xD;
and Erbium Nickel is not satisfactory due to the aging effect and perhaps one should look for&#xD;
fresh regenerator materials.</description>
      <pubDate>Mon, 03 Jun 2024 00:00:00 GMT</pubDate>
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      <dc:date>2024-06-03T00:00:00Z</dc:date>
    </item>
    <item>
      <title>DEVELOPMENT OF TWO STAGE GIFFORD McMAHON CRYOCOOLER</title>
      <link>http://210.212.227.212:8080/xmlui/handle/123456789/598</link>
      <description>Title: DEVELOPMENT OF TWO STAGE GIFFORD McMAHON CRYOCOOLER
Authors: Rahul, R; Rijo Jacob, Thomas
Abstract: Cryogenic fluids have significant growth in different industrial applications, including superconductivity,&#xD;
aerospace etc. Depending on the application, the cryogenic fluid flow's purpose varies greatly. Cryogens&#xD;
are required in the case of superconducting magnets in order to maintain the magnet material below a&#xD;
certain temperature and preserve the superconducting state. Currently, no one technology is capable of&#xD;
measuring two-phase flow throughout the entire range of flow conditions. Presenting the design and testing&#xD;
of the proposed two-phase flow-metering device is the goal. The concept is to use capacitance to measure&#xD;
the liquid's height at various locations in the channel by forcing the flow into both a laminar and stratified&#xD;
flow regime. In theory, the flow-rate can be inferred from these height measurements. The idea is a two-&#xD;
phase flow of vapor and liquid through small, parallel channels that produces a laminar, stratified flow that&#xD;
slopes at the liquid-vapor interface. Capacitance-liquid level devices are used in the channel to measure&#xD;
the liquid height. G10 printed circuit boards (PCBs) are used to create the channel walls, and the capacitor&#xD;
conductors are electroplated directly onto the boards to minimize channel intrusion.</description>
      <pubDate>Mon, 03 Jun 2024 00:00:00 GMT</pubDate>
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      <dc:date>2024-06-03T00:00:00Z</dc:date>
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