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ΪÁË̽Ë÷µçÁ÷Ì嶯Á¦Ñ§¸ÉÔï»úÀí£¬ÓÅ»¯¸ÉÔ﹤ÒÕ£¬Ìá¸ß¸ÉÔïЧÂÊ£¬Í¨¹ý²ÉÓÃÕëµç¼«¡¢Ïߵ缫ºÍ°åµç¼«ÔÚ²»Í¬µÄµçѹ϶Զ¹¸¯½øÐÐÁ˸ÉÔïËٶȶԱÈʵÑ飬ͬʱ½øÐÐÁËÕëµç¼«Ï¶¹¸¯¼Ó²£Á§ÕÖÓë²»¼ÓÕֵĸÉÔïËٶȶԱÈʵÑéºÍ¶¹¸¯µÄ¸ßѹµç³¡Ô¤´¦ÀíʵÑ顣ʵÑé½á¹û±íÃ÷£º²ÉÓðåµç¼«¸ÉÔïЧ¹û²»Ã÷ÏÔ£¬¶ø²ÉÓÃÏߵ缫ºÍÕëµç¼«ÄÜ»ñµÃ½Ï´óµÄ¸ÉÔïËÙ¶È£¬¼Ó²£Á§Õֺ󶹸¯µÄ¸ÉÔïËÙ¶ÈÔ¶µÍÓÚδ¼ÓÕÖ¶¹¸¯£¬¸ßѹµç³¡Ô¤´¦Àí²¢²»ÄÜÌá¸ß¶¹¸¯µÄ¸ÉÔïËÙ¶È£¬×îºó·ÖÎöÁ˵çÁ÷Ì嶯Á¦Ñ§¸ÉÔï»úÀí£¬ÈÏΪÀë×Ó·ç¶Ô±»¸ÉÔïÎïÁϵijå»÷×÷ÓÃÊǵ¼ÖÂÆä¸ÉÔïËÙ¶ÈÔö¼ÓµÄÖ÷ÒªÔÒò¡£ In order to explore the mechanism, improve the drying efficiency of Electrohydrodynamic (EHD) drying, contrast experiments of drying rate on tofu using a needle electrode, a wire electrode and a plate electrode under different voltages have been evaluated in this study, respectively. At the same time, the contrast experiment of drying rate on tofu using a needle electrode with and without glass enclosures and the drying rate of the tofu pretreated by the high electric field was investigated. The results indicate high voltage electric field formed by a plate electrode that cannot improve the drying rate obviously, while a needle electrode and a wire electrode can improve the drying rate significantly, the drying rate of tofu with plus glass enclosures is much lower than that without glass enclosures, the high electric field pretreatment could not increase the drying rate of the tofu and it is thought that it is corona wind produced by the electrode, which resembles a round jet , impinges and removes moisture from the tofu surface. |
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monitor2885
ÖÁ×ðľ³æ (Ö°Òµ×÷¼Ò)
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WHQ197(½ð±Ò+8,VIP+0):ллÌṩ°ïÖú 7-8 08:09
WHQ197(½ð±Ò+8,VIP+0):ллÌṩ°ïÖú 7-8 08:09
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Contrast experiments of drying rate on tofu applying needle electrode, wire electrode and plate electrode under different voltages were measured, respectively, in order to explore mechanism, optimizing process and improve drying efficiency of Electrohydrodynamic (EHD).Meanwhile, The contrast experiment of drying rate on tofu using needle electrode with glass enclosure and counterpart without it, were investigated, as well as high electric field pretreatment. The results indicated that plate electrode was not desired, while high drying rate was obtained with needle and wire electrodes. Then drying rate of tofu fitted with glass enclosure showed slower than that one without it. High electric field pretreatment failed to improve drying rate. Finally, drying mechanism about EHD was analyzed. The concussion impact of corona wind on target was the main reason to increase drying rate. *²»Òª×ÜÓÃthe£»×´Óï´Ó¾äºóÖ㻳¤¾ä²»Òª¹ý¶à£»Óï̬¶àΪ¹ýȥʱ |

2Â¥2009-07-06 10:07:35
cloisonne
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WHQ197(½ð±Ò+7,VIP+0):¸Ðл°ïÖú 7-8 08:10
WHQ197(½ð±Ò+7,VIP+0):¸Ðл°ïÖú 7-8 08:10
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The purpose of this paper was to explore the mechanism of EHD drying, to optimize the drying process, and to improve the drying efficiency. In experiments, bean curd (tofu) drying rate was comparatively measured by needle electrodes, wire electrodes and plate electrodes at different voltages. At the same time, High voltage electric field pretreatment experiments and drying rate experiments were performed on bean curd under the needle electrode with and with out glass cover. The results showed that the drying effect of the electrode plate was not obvious. Use wire electrode and needle electrode can obtain better drying rate. The drying rate of bean curd with glass cover is much lower than that without glass cover. High voltage electric field pretreatment cannot increase the drying rate of bean curd. At last, the EHD drying mechanism was analyzed. The impact of ion wind on the drying material played a major role to increase drying rate. [ Last edited by cloisonne on 2009-7-6 at 12:09 ] |
3Â¥2009-07-06 12:04:32














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