1993TEION KOGAKU (Journal of Cryogenics and Superconductivity Society of Japan)Open access

Vacuum Insulation for a Cryostat.

Takashi Noguchi

Open full text 4 citations

Abstract

In the structure of any cryogenic system, thermal isolation of the low temperature environment must be achieved effectively.Fundamental thermal insulation techniques and heat transfer mech anisms are shown in the framework of cryostat design described below.Heat leaks onto a low temperature environment through the thermal insulation of the cryostat can be devided into three different mechanisms.(1) Gas conduction in void spaces contained between the insulation mate rials.(2) Radiation across these void spaces and through the components of the insulation.(3) Solids conduction through the insulation materials and contact heat transfer between individual components of the insulation.The type of vacuum insulation, such as evacuated powder insula tion, plain vacuum insulation, and multilayer insulation (MLI), must be chosen suitably for a given cryogenic application.The selection must be aided by a study of the heat transfer in the particular vacuum insulation.

Open-access reader

About this research paper

What this paper is about

In the structure of any cryogenic system, thermal isolation of the low temperature environment must be achieved effectively.Fundamental thermal insulation techniques and heat transfer mech anisms are shown in the framework of cryostat design described below.Heat leaks onto a low temperature environment through the thermal insulation of the cryostat can be devided into three different mechanisms.(1) Gas conduction in void spaces contained between the insulation mate rials.(2) Radiation across these void spaces and through the components of the insulation.(3) Solids conduction through the insulation materials and contact heat transfer between individual components of the insulation.The type of vacuum insulation, such as evacuated powder insula tion, plain vacuum insulation, and multilayer insulation (MLI), must be chosen suitably for a given cryogenic application.The selection must be aided by a study of the heat transfer in the particular vacuum insulation.

Why it matters

OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

In the structure of any cryogenic system, thermal isolation of the low temperature environment must be achieved effectively.Fundamental thermal insulation techniques and heat transfer mech anisms are shown in the framework of cryostat design described below.Heat leaks onto a low temperature environment through the thermal insulation of the cryostat can be devided into three different mechanisms.(1) Gas conduction in void spaces contained between the insulation mate rials.(2) Radiation across these void spaces and through the components of the insulation.(3) Solids conduction through the insulation materials and contact heat transfer between individual components of the insulation.The type of vacuum insulation, such as evacuated powder insula tion, plain vacuum insulation, and multilayer insulation (MLI), must be chosen suitably for a given cryogenic application.The selection must be aided by a study of the heat transfer in the particular vacuum insulation.

Key concepts: Cryostat, Vacuum insulated panel, Thermal insulation, Pipe insulation, Materials science, Dynamic insulation, Thermal conduction, Heat transfer

Related papers

Back to paper searchBrowse research topicsOriginal source
Vacuum Insulation for a Cryostat. — Research Paper | ScholarLens