{"id":33042,"date":"2016-11-01T00:21:00","date_gmt":"2016-10-31T23:21:00","guid":{"rendered":"https:\/\/www.sonnenseite.com\/future\/collaboration-advances-clothes-dryer-from-idea-to-invention.html"},"modified":"2016-11-01T00:21:00","modified_gmt":"2016-10-31T23:21:00","slug":"collaboration-advances-clothes-dryer-from-idea-to-invention","status":"publish","type":"post","link":"https:\/\/www.sonnenseite.com\/en\/future\/collaboration-advances-clothes-dryer-from-idea-to-invention\/","title":{"rendered":"Collaboration advances clothes dryer from idea to invention"},"content":{"rendered":"<p>The development of the ultrasonic clothes dryer at Oak Ridge National Laboratory is a prime example of collaboration among various divisions at the lab&mdash;drawing upon the expertise necessary no matter where a scientist sits to transform a well-researched idea into a great invention.<\/p>\n<p> <!--more--> <\/p>\n<p>When researchers in the Energy and Transportation Science Division  (ETSD) decided to turn the experiments they had been conducting&mdash;on the  use of ultrasonic transducers to nebulize water&mdash;into a demonstration of  how the technology could be applied to drying clothes, their mechanical  engineering background was key to achieving success.<\/p>\n<p>The process involves piezoelectric transducers placed in direct  contact with wet fabric, generating high frequency vibrations that  atomize water, turning it into a mist. Taking thermal heat out of the  drying process could result in significant energy savings compared with  conventional clothes dryers that rely on heated air.<\/p>\n<p>But scaling the project up from an experiment on a tiny square of  fabric to a demonstration of a full-size press-style dryer required more  sophisticated electronics and controls.<\/p>\n<p>That&rsquo;s when the Electrical and Electronics Systems Research (EESR)  Division answered ESTD&rsquo;s call for assistance. Both organizations are  part of the Energy and Environmental Sciences Directorate.<\/p>\n<p>After examining the setup by principal investigator Ayyoub Momen and  researcher Viral Patel in ETSD&rsquo;s Building Equipment Research Group, the  electrical engineers and other researchers in EESR&rsquo;s Sensors and  Embedded Systems (SES) Group assisted with the electronics and some of  the physics aspects of the transducers. They designed and built a series  of amplifiers and electronic drivers as the researchers tested various  frequencies, wave shapes, amplitudes, and voltage levels to help  determine the best kind of piezoelectric transducers to use in the  demonstration.<\/p>\n<p>EESR also had students available who were able to work on the  project&mdash;with guidance&mdash;on such tasks as drawing up schematics and  producing needed equipment, noted Roger Kisner, who led the SES group  effort. Participating were Christi Johnson, a staff member currently  working on an MS in Electrical Engineering; Frederick Kyle Reed,  pursuing a PhD in Electrical Engineering; and Evan Schlenker, who holds a  BS in Electrical Engineering and who will begin pursuing a degree in  the same area in the fall of 2016.<\/p>\n<p>Later, SES called on Reed&rsquo;s services to develop, simulate, mount, and test circuits.<\/p>\n<p>Momen said that about 80% of the work on the prototype dryer was performed in Kisner&rsquo;s lab space.<\/p>\n<p>&nbsp;&ldquo;From the first day, the SES group was very impactful on the  project,&rdquo; Momen said, adding that SES identified the correct commercial  amplifier for the prototype and later designed and built three custom  amplifiers that significantly boosted the efficiency of the  demonstration.<\/p>\n<p>&ldquo;That&rsquo;s what we do in this group: We get so involved that sometimes  you can&rsquo;t distinguish us,&rdquo; Kisner said. &ldquo;We want these projects to  succeed. And so we&rsquo;re not just a support technician who comes in; we  become a researcher with the original team and drive the work forward.&rdquo;<\/p>\n<p>&ldquo;We tend to have a very wide background in our group, with expertise  in electronics, electrical systems, optics, whatever needs to be brought  to bear,&rdquo; Kisner said. &ldquo;We tend to do a lot of rapid prototyping of  things.<\/p>\n<p>&ldquo;Someone might come to us and say, &lsquo;I&rsquo;m building a new  whatever-it-is, and no one&rsquo;s ever done this before. Can you quickly put  together something that would achieve the following things?&rsquo; And then we  might respond, &lsquo;Oh, I&rsquo;ve never heard of it. Let&rsquo;s do it.&rsquo; And then we  step out and do what it takes to make it work,&rdquo; said Kisner, who is a  Distinguished R&amp;D Staffer and Distinguished Inventor at ORNL.<\/p>\n<p>Next up for the dryer project is studying the feasibility of moving to a  drum-type application typical in residential dryers. One challenge to  that scale-up is the requirement that the clothes and the transducers  come in contact with each other. Momen said coupling can be accomplished  through several means, from relying on the weight of the clothes to  adding a bit more centrifugal force or backing reinforcement.<\/p>\n<p>The energy savings potential is enormous because conventional clothes  dryers using thermal heat currently consume about 1% of the energy used  in the United States, Momen noted.<\/p>\n<p>Using an ultrasonic process instead could cut drying time in half and  use perhaps one-tenth of the power, with resulting savings in energy,  cost, and time, Kisner said.<\/p>\n<p>The invention can be scaled up to industrial applications, with the  potential for collaboration with the pulp and paper industry for use in  drying tons of pulp at a time or with carpet manufacturers in fiber  drying, the researchers said.<\/p>\n<p>ORNL is managed by UT-Battelle for DOE&rsquo;s Office of Science, the  single largest supporter of basic research in the physical sciences in  the United States. DOE&rsquo;s Office of Science is working to address some of  the most pressing challenges of our time. For more information, please  visit <a href=\"http:\/\/www.science.energy.gov\" target=\"_blank\" rel=\"noopener noreferrer\">science.energy.gov<\/a>.&nbsp;<\/p>\n<p><iframe loading=\"lazy\" frameborder=\"0\" src=\"http:\/\/www.youtube.com\/embed\/9oG9mIUGHMg\" height=\"360\" width=\"100%\"><\/iframe><\/p>\n<h5 class=\"green\">Source<\/h5>\n<p><a href=\"https:\/\/www.ornl.gov\/division\/projects\/collaboration-advances-clothes-dryer-idea-invention\" target=\"_blank\" rel=\"noopener noreferrer\">OAK RIDGE \/ National Laboratory | by Stephanie Seay 2016<\/a><\/p>\n<div class=\"shariff shariff-align-flex-start shariff-widget-align-flex-start\"><div class=\"ShariffHeadline\">Diese Meldung teilen<\/div><ul class=\"shariff-buttons theme-round orientation-horizontal buttonsize-medium\"><li class=\"shariff-button facebook shariff-nocustomcolor\" style=\"background-color:#4273c8;border-radius:1%\"><a 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