Hawaii Geothermal Project : a parametric study of a vertical heat exchanger designed for geothermal power plant application

dc.contributor.author Shimozono, Gary
dc.contributor.author Chai, Hi Chang
dc.contributor.author Kihara, Deane H.
dc.date.accessioned 2011-07-26T00:50:25Z
dc.date.available 2011-07-26T00:50:25Z
dc.date.issued 1974
dc.description.abstract The preliminary design of a vertical, counterflow, shell and tube heat exchanger for use in a binary fluid power cycle is presented. The heat exchanger is to be part of a representative geothermal power plant generating 10 MW utilizing geothermal brine at 350°F with isobutane as the working fluid. The computational procedure for determining heat transfer coefficients, tube lengths, number of tubes, and pressure drops is outlined. Detailed in graphical form are results of a parametric study showing how these four parameters are affected by changes in turbine inlet temperature, tube diameter, tube pitch, isobutane velocity, scale thickness, pinch point temperature difference, and system pressure.
dc.description.sponsorship Prepared under National Science Foundation Research Grant No. GI-38319.
dc.format.extent 63 pages
dc.identifier.citation Shimozono G, Chai HC, Kihara D. 1974. Hawaii Geothermal Project: A parametric study of a vertical heat exchanger designed for geothermal power plant application. Honolulu (HI): University of Hawaii. HGP technical report, 5.
dc.identifier.uri http://hdl.handle.net/10125/20977
dc.language.iso en-US
dc.publisher Hawaii Geothermal Project, University of Hawaii at Manoa
dc.relation.ispartofseries Hawaii Geothermal Project: Technical Report No. 5
dc.subject Hawaii Geothermal Project
dc.subject geothermal power plants
dc.subject geothermal power production
dc.subject.lcsh Heat exchangers
dc.subject.lcsh Electric power production
dc.subject.lcsh Geothermal engineering
dc.title Hawaii Geothermal Project : a parametric study of a vertical heat exchanger designed for geothermal power plant application
dc.type Report
dc.type.dcmi Text
Files
Original bundle
Now showing 1 - 1 of 1
No Thumbnail Available
Name:
TechRprt5_ParametricStudy.pdf
Size:
1.93 MB
Format:
Adobe Portable Document Format
Description: