Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow

This experimentation investigates the local heat transfer characteristics of an impinging jet with the effects of cross flow. The jet is formed by a single round hole with a diameter of 0.25 inches, sharp edges and a length to diameter ratio of 4. For one combination of impingement plate spacing and...

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Online Access:http://hdl.handle.net/2047/d20002912
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spelling ndltd-NEU--neu-16952021-05-25T05:10:06ZExperimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flowThis experimentation investigates the local heat transfer characteristics of an impinging jet with the effects of cross flow. The jet is formed by a single round hole with a diameter of 0.25 inches, sharp edges and a length to diameter ratio of 4. For one combination of impingement plate spacing and cross flow to jet flow mass velocity ratio, detailed photographs of a sheet of liquid crystal were taken. These photographs were then used to create a Nusselt number contour plot. Observations are made regarding the comparison of the Nusselt number contour plots with and without cross flow. Comparisons are also made to data in open literature citing the degradation of the average Nusselt number with cross flow to that without cross flow.http://hdl.handle.net/2047/d20002912
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sources NDLTD
description This experimentation investigates the local heat transfer characteristics of an impinging jet with the effects of cross flow. The jet is formed by a single round hole with a diameter of 0.25 inches, sharp edges and a length to diameter ratio of 4. For one combination of impingement plate spacing and cross flow to jet flow mass velocity ratio, detailed photographs of a sheet of liquid crystal were taken. These photographs were then used to create a Nusselt number contour plot. Observations are made regarding the comparison of the Nusselt number contour plots with and without cross flow. Comparisons are also made to data in open literature citing the degradation of the average Nusselt number with cross flow to that without cross flow.
title Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
spellingShingle Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
title_short Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
title_full Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
title_fullStr Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
title_full_unstemmed Experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
title_sort experimental investigation of the discharge coefficient and impingement heat transfer characteristics of a single jet in cross flow
publishDate
url http://hdl.handle.net/2047/d20002912
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