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    • 1. 发明申请
    • Power fluctuation suppressing method and power generation facility using same
    • 功率波动抑制方法及使用其的发电设备
    • US20050242781A1
    • 2005-11-03
    • US10519086
    • 2003-06-19
    • Tsuguhiko Nakagawa
    • Tsuguhiko Nakagawa
    • F02C3/20F02C3/22F02C3/30F02C6/00F02C6/14F02C7/22F02C7/228F02C9/40H01M8/00H01M8/06H01M10/44H02J3/24H02J3/28H02J3/32H02J7/00
    • F02C3/305F02C3/20F02C3/30F02C6/14F02C9/40F05D2270/061H02J3/24H02J3/28H02J3/32Y02E20/16
    • The present invention provides a method for suppressing power fluctuation of a high-efficiency combined power generation system that uses a byproduct gas generated in a plant, the method including the steps of adding a high-calorific-value substance having a calorific value higher than that of the byproduct gas so as to increase both the total calorie per unit of time and the calorific value per unit gas quantity up to predetermined targets; and adding a low-calorific-value substance having a calorific value lower than that of the byproduct gas so as to control the caloric value and/or the composition of the power generation fuel, whereby the total calorie and the calorific value are controlled within predetermined ranges. The present invention also provides another method for suppressing power fluctuation of a high-efficiency combined power generation system that uses a byproduct gas generated in a plant, the method including a step of alternately switching charge/discharge modes of at least two storage apparatuses to suppress the fluctuation of the power generated, and a power generating facility for these methods. According to the present invention, not only short-term power fluctuation caused inside the plant but also long-term fluctuation are also suppressed. The excess power, whose fluctuation is suppressed, can be controlled to have a power supply pattern coincident with a power demand pattern so that power can be stably supplied to a site outside the plant.
    • 本发明提供了一种用于抑制使用在工厂中产生的副产物气体的高效率组合发电系统的功率波动的方法,所述方法包括以下步骤:添加热值高于物质的热值物质, 的副产物气体,以便将每单位时间的总热量和每单位气体量的热值增加到预定目标; 并添加具有低于副产物气体的发热量的低热值物质,以便控制发电燃料的热值和/或组成,从而将总热量和发热量控制在预定的 范围。 本发明还提供了一种用于抑制使用在工厂中产生的副产物气体的高效率组合发电系统的功率波动的方法,该方法包括交替地切换至少两个存储装置的充电/放电模式以抑制 所产生的电力波动,以及这些方法的发电设备。 根据本发明,不仅可以抑制工厂内产生的短期功率波动,而且抑制长期的波动。 可以控制其波动被抑制的过剩功率使得电力供应模式与功率需求模式一致,使得能够将电力稳定地供应到设备外部的位置。
    • 4. 发明授权
    • Method of continuously carburizing metal strip
    • 连续渗碳金属条的方法
    • US6074493A
    • 2000-06-13
    • US713189
    • 1996-09-12
    • Tsuguhiko NakagawaKoushi KuramotoNobuaki HanazonoJun MorozumiSusumu SatohSusumu Okada
    • Tsuguhiko NakagawaKoushi KuramotoNobuaki HanazonoJun MorozumiSusumu SatohSusumu Okada
    • C21D1/19C21D9/00C23C8/22C23C8/20C21D1/54
    • C21D9/0062C21D1/19C23C8/22
    • This invention aims at providing a method of continuously carburizing a metal strip, which is capable of providing industrially optimum carburization conditions while attaining non-soot-generating atmospheric data, desired carburization concentration distribution and desired carburization rate, in a case where a strip passed through a carburization furnace is carburized continuously in a surface reaction rate-governing area in which the carbon concentration in a superficial layer of the strip has not yet reached an equilibruim level with respect to the time. The method consist of carburization concentration distribution (S7), on the basis of the carburization conditions including given specification data for the steel plate, furnace temperature and composition of the atmospheric gas, outputting the concentration of the components of the atmospheric gas, feed and discharge rates and other carburization conditions when the set carburization rate and an actual carburization rate are equal (S8-S15), and correcting the set carburization rate when a difference between the set carburization rate and an actual carburization rate is large, and correcting the strip feed rate while correcting the composition of the atmospheric gas when a difference between the predetermined carburization rate and set carburization rate is large (S9).
    • 本发明的目的在于提供一种连续渗碳金属带的方法,该方法能够在条带通过的情况下获得工业上最佳的渗碳条件,同时获得产生非烟灰的大气数据,所需的渗碳浓度分布和所需的渗碳速率 渗碳炉在表面反应速率控制区域中连续渗碳,其中带材的表面层中的碳浓度相对于时间尚未达到平衡水平。 该方法包括渗碳浓度分布(S7),基于包括给出的钢板规格数据,炉温和气氛气体组成的渗碳条件,输出大气气体成分浓度,进料和排出 当设定的渗碳速率和实际渗碳速率相等时(S8-S15),并且当设定的渗碳速率和实际渗碳速率之间的差异大时校正设定的渗碳速率,并且校正带材进料 当预定的渗碳速率和设定的渗碳速率之间的差异大时,校正气氛气体的组成的速率(S9)。
    • 9. 发明授权
    • Method and apparatus for cooling furnace
    • 冷却炉的方法和装置
    • US06238208B1
    • 2001-05-29
    • US09242922
    • 1999-02-26
    • Masaharu YoshidaTsuguhiko Nakagawa
    • Masaharu YoshidaTsuguhiko Nakagawa
    • F28G500
    • F27B9/30F27B9/3011F27D9/00F27D2009/0008F27D2009/0016
    • A method for cooling the heating furnace during the dormant stage of the heating furnace; said method surely and sufficiently shortens the cooling time of the heating furnace irrespective of seasons such as summer or winter, and yet, without damaging the inner furnace refractories. Furthermore, the method is applicable to ceramic fiber furnaces. The method comprises: inserting, from an extracting port to the inside of the heating furnace, a plurality of lances being arranged along the width direction of the extracting port of said furnace while taking a predetermined distance between each other; and spraying, from a plurality of spray nozzles provided on the lances, a coolant in the form of a mist against a scale deposited inside the heating furnace. Optionally, a cooling fan is provided to forcibly supply a cooling air into the heating furnace.
    • 一种用于在加热炉的休眠阶段冷却加热炉的方法; 所述方法确切地充分地缩短了加热炉的冷却时间,而不管季节如夏季或冬季,而不损坏内炉耐火材料。 此外,该方法适用于陶瓷纤维炉。 该方法包括:从提取口向加热炉的内部插入多个喷枪,沿着所述熔炉的提取口的宽度方向设置,同时彼此间隔预定的距离; 并且从设置在所述喷枪上的多个喷嘴喷射雾状沉积在所述加热炉内部的水垢的冷却剂。 可选地,提供冷却风扇以强制地将冷却空气供应到加热炉中。
    • 10. 发明授权
    • Heat treating furnace for a continously supplied metal strip
    • 用于连续供应的金属条的热处理炉
    • US6007761A
    • 1999-12-28
    • US16363
    • 1998-01-30
    • Tsuguhiko NakagawaKenta KarubeHiroshi OkamotoToshiyuki IwataniSakae MochizukiYoshiharu Fujiwara
    • Tsuguhiko NakagawaKenta KarubeHiroshi OkamotoToshiyuki IwataniSakae MochizukiYoshiharu Fujiwara
    • C21D1/52C21D9/56F27B9/12F27B9/28F27D17/00C21B7/22C21D9/52
    • C21D9/56C21D9/562F27B9/28F27D17/004C21D1/52F27B2009/122F27D2017/007
    • A continuous heat treating furnace in which heat is efficiently recovered from the combustion exhaust gas from the heating section of a continuous annealing furnace. The continuous annealing furnace of the metal strip is a heating furnace or a heating device provided with plural burners for heating to a predetermined temperature a steel material or a continuously supplied metal strip by means of combustion of the burners; a regenerative heat exchanger for collecting a sensible heat of a combustion exhaust gas of the burners, reserving the heat in a regenerator and supplying a predetermined gas to the regenerator to recover the heat to the predetermined gas; and a preheating section for blowing the predetermined gas from the regenerative heat exchanger to the metal strip for preheating. The heat exchanger body is divided into at least three sections, each section having a regenerator. When the heat exchanger body is continuously or intermittently rotated, each section is provided with a path for successively repeating to pass a heating section combustion exhaust gas for applying a sensible heat of exhaust gas to the regenerator, a purging gas for removing debris sticking to the regenerator when applying the sensible heat of the heating section exhaust gas and a circulating gas for collecting the sensible heat of the regenerator and blowing the heat to the metal strip passing the preheating section to raise a temperature of the metal strip.
    • 一种连续热处理炉,其中从连续退火炉的加热部分的燃烧废气中有效地回收热量。 金属带的连续退火炉是具有多个燃烧器的加热炉或加热装置,用于通过燃烧器的燃烧将钢材或连续供应的金属带加热到预定温度; 用于收集燃烧器的燃烧废气的显热的再生式热交换器,将再生器中的热量保留并将预定气体供应到再生器以回收到预定气体的热量; 以及用于将预定气体从再生热交换器吹送到用于预热的金属带的预热部分。 热交换器主体被分成至少三个部分,每个部分具有再生器。 当热交换器主体连续地或间歇地旋转时,每个部分设置有连续重复的路径,以将通过用于向再生器施加排气的显热的加热部分燃烧废气,用于去除残留在 再生器在施加加热部排气的显热时,循环气体用于收集再生器的显热,并向通过预热部的金属带吹送热量,使金属带的温度上升。