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ASME 2011 Power Conference collocated with JSME ICOPE 2011 | 2011

A Demonstration Study on a High Performance Vertical Roller Mill for a Pulverized Coal Firing Boiler

Yutaka Takeno; Hiroaki Kanemoto; Hideo Mitsui

We have developed new technologies to improve particle classification performance of vertical roller mills using a rotary nozzle ring with reverse swirling flow and a louver separator. A rotary nozzle and a louver are installed in primary and secondary classification sections of the mill, respectively. A series of tests using a pilot scale mill showed that these technologies reduce the fraction of coarse particles, power consumption of the mill and mill differential pressure. For an industrial scale-up, we conducted a demonstration test using a vertical roller mill equipped in a 700MW thermal power plant consisting of a pulverized coal firing boiler and six mills with approx. 70t/h nominal grinding capacity in each. In this paper, we discuss demonstration test results on the viewpoint of decreasing coarse particle fractions, power consumption and mill differential pressure. Under normal operating conditions, the coarse particle fraction in pulverized coal was reduced more than 50%, power consumption was reduced 7% and differential pressure was reduced approx. 50%. Additionally, power consumption was reduced approx. 15% under high coal feed conditions. We confirmed that these new technologies effectively improved performance in higher mill loading rates. These results provide a prospect of upgrading the plant performance, especially in reducing unburned carbon in fly ash and power consumption of auxiliary equipment.Copyright


Archive | 2005

Classifier, vertical crusher having the classifier, and coal fired boiler apparatus having the vertical crusher

Yutaka Takeno; Hiroaki Kanemoto; Teruaki Tatsuma; Takashi Harada; Taketoshi TAnabe


Archive | 2001

Fuel distribution device for fuel feed ducts and method of operating distribution device

Yoshinori Ohtani; Hidehisa Yoshizako; Hiroaki Kanemoto; Yutaka Takeno; Yoshio Shimogori; Toshikazu Tsumura; Yoshitaka Takahashi


Archive | 2008

Classification device, standing pulverizer using the classification device, and coal burning boiler apparatus

Yoshinori Otani; Hiroaki Kanemoto; Shinichiro Nomura; Hideo Mitsui; Yutaka Takeno


Archive | 2011

Rotating classifier and classification device equipped with same, pulverization device, and coal-fired boiler plant

Takashi Aizawa; 相澤 孝; Akira Baba; 馬場 彰; Yuki Kondo; 祐樹 近藤; Yutaka Takeno; 豊 竹野; Shinichiro Nomura; 野村 伸一郎


Archive | 2010

Vertical type crushing device, and coal burning boiler device

Hideo Mitsui; Osamu Okada; Mitsugi Sugasawa; Yutaka Takeno; Hitoshi Wakamatsu; 秀雄 三井; 修 岡田; 豊 竹野; 仁 若松; 貢 菅澤


Archive | 2014

Vertical pulverizing classification device

Jun Kashima; 淳 鹿島; Takashi Aizawa; 相澤 孝; Yutaka Takeno; 豊 竹野


Journal of The Society of Powder Technology, Japan | 2013

Evaluation of Flame Stability for Development of Pulverized Coal Fired Burners by Using a Japanese Industrial Standard Method (JIS Z8818 ; Test Method for Minimum Explosible Concentration of Combustible Dusts)

Masayuki Taniguchi; Yutaka Takeno


Archive | 2012

Vertical type crushing device

Atsushi Kashima; 淳 鹿島; Yutaka Takeno; 豊 竹野; Takashi Aizawa; 孝 相澤


The Proceedings of the International Conference on Power Engineering (ICOPE) | 2009

A311 REDUCTION IN POWER CONSUMPTION BY IMPROVEMENT OF CLASSIFICATION PERFORMANCE ON VERTICAL ROLLER MILLS(Fuel)

Yutaka Takeno; Hiroaki Kanemoto; Yoshinori Ootani; Shinichiroo Nomura; Hideo Mitsui

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