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    • 1. 发明授权
    • Method for operating a heat exchanger in a power plant
    • 在发电厂中操作热交换器的方法
    • US06962054B1
    • 2005-11-08
    • US10413834
    • 2003-04-15
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • F01K7/32F01K13/00F01K25/08F02C7/224F03G7/00
    • F02C7/224F05D2260/211F05D2260/232
    • The invention is a method for operating a heat exchanger in a power plant by pumping a heat exchange fluid around a set of tubes in the first heat exchanger; increasing the heat exchange fluid temperature and cooling the compressed heated air; splitting heated fluid flow into a second and third heat exchanger and a vessel; injecting a hydrocarbon flow into the set of tubes in the second heat exchanger; flowing the heated fluid into the second heat exchanger transferring heat from the heated heat exchange fluid to the hydrocarbon flow whose temperature increases between 90% and 500%; flowing the cooled heat exchange fluid to the vessel; flowing the heated fluid from the first heat exchanger to a third heat exchanger and cooling the excess heated heat exchange fluid; and using the vessel to accommodate thermal expansion of the fluid.
    • 本发明是通过在第一热交换器内泵送一组管子周围的热交换流体来操作发电厂中的热交换器的方法; 增加热交换流体温度并冷却压缩的加热空气; 将加热的流体流分解成第二和第三热交换器和容器; 将烃流注入第二热交换器中的一组管中; 将加热的流体流入第二热交换器,将热量从加热的热交换流体传递到温度在90%和500%之间的烃流; 将冷却的热交换流体流入容器; 将加热的流体从第一热交换器流动到第三热交换器并冷却过热的热交换流体; 并使用容器适应流体的热膨胀。
    • 2. 发明授权
    • Method for improving power plant thermal efficiency
    • 提高发电厂热效率的方法
    • US06820423B1
    • 2004-11-23
    • US10654096
    • 2003-09-03
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • F01K2508
    • F01K25/08
    • Embodiments of the invention include a method for retrofitting a power plant that reduces the consumption of fossil fuel using compressed heated air by retrofitting the power plant by adding at least three heat exchangers, a vessel, a pump, and a control system to the power plant, wherein the first heat exchanger receives compressed heated air from a power source and produces heated heat exchange fluid and a second heat exchanger heats a hydrocarbon flow that drives a turbine coupled to a generator in the power plant, wherein the generator produces power and exhaust gases, wherein the method entails pumping a heat exchange fluid through a first heat exchanger; exchanging heat with compressed heated air; splitting heated fluid flow into a second heat exchanger and a vessel; flowing the heated fluid through a second heat exchanger exchanging heat with a hydrocarbon flow; flowing the heated fluid from the vessel to a third heat exchanger; and using the vessel to accommodate fluid thermal expansion.
    • 本发明的实施例包括一种用于改造发电厂的方法,其使用压缩的加热空气来减少化石燃料的消耗,通过将至少三个热交换器,容器,泵和控制系统添加到发电厂来改造发电厂 ,其中所述第一热交换器从动力源接收压缩的加热空气并产生加热的热交换流体,并且第二热交换器加热驱动与所述发电厂中的发电机相连的涡轮机的烃流,其中所述发电机产生动力和废气 其中所述方法需要通过第一热交换器泵送热交换流体; 与压缩空气进行热交换; 将加热的流体流分解成第二热交换器和容器; 使加热的流体流过与烃流交换热量的第二热交换器; 将加热的流体从容器流动到第三热交换器; 并使用容器适应流体热膨胀。
    • 3. 发明授权
    • Heat exchange system
    • 热交换系统
    • US07124587B1
    • 2006-10-24
    • US10413835
    • 2003-04-15
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • F01K7/32F01K13/00F01K25/08F01K25/06F03G7/00
    • F02C7/224F28D21/0014
    • The invention is a system for heating hydrocarbon flows with three heat exchangers, wherein the first heat exchanger transfers heat from compressed heated air to a pressurized heat exchange fluid; wherein the second heat exchanger transfers heat from the pressurized heat exchange fluid to a hydrocarbon flow and increases the hydrocarbon flow temperature between 50% and 900%; wherein the third heat exchanger receives the pressurized heat exchange fluid from the first heat exchanger and cools the fluid using at least one fan located in the third heat exchanger; and the system also has a vessel to accommodate thermal expansion of the pressurized heat exchange fluid and at least one pump for transporting fluid through the system.
    • 本发明是用三个热交换器加热烃流的系统,其中第一热交换器将热量从压缩的加热空气传递到加压的热交换流体; 其中所述第二热交换器将热量从所述加压热交换流体传递到烃流,并且将所述烃流动温度增加到50%和900%之间; 其中所述第三热交换器从所述第一热交换器接收所述加压热交换流体,并且使用位于所述第三热交换器中的至少一个风扇来冷却所述流体; 并且该系统还具有容纳加压热交换流体的热膨胀的容器和用于输送流体通过系统的至少一个泵。
    • 4. 发明授权
    • Method for improving power plant thermal efficiency
    • 提高发电厂热效率的方法
    • US06820422B1
    • 2004-11-23
    • US10413767
    • 2003-04-15
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • Jonathan W. LinneyMichael B. BibbTimothy Ray Bauer
    • F01K732
    • F01K25/08F28D7/00F28D2021/0019
    • The invention is a method for retrofitting a power plant that reduces the consumption of fossil fuel using compressed heated air by retrofitting the power plant by adding at least three heat exchangers, a vessel, a pump, and control system to the power plant, wherein the first heat exchanger receives compressed heated air from a power source and produces heated heat exchange fluid, a second heat exchanger heats a hydrocarbon flow that drives a turbine coupled to a generator, wherein the generator produces power and exhaust gases, wherein the method entails pumping a heat exchange fluid through a first heat exchanger; exchanging heat with compressed heated air; splitting heated fluid flow into a second and third heat exchanger; flowing the heated fluid through a second heat exchanger exchanging heat with a hydrocarbon flow; flowing the heated fluid from the first to third heat exchanger; and using the vessel to accommodate fluid thermal expansion.
    • 本发明是一种用于改造发电厂的方法,其使用压缩的加热空气来减少化石燃料的消耗,通过将至少三个热交换器,容器,泵和控制系统添加到发电厂来改造发电厂,其中, 第一热交换器从电源接收压缩的加热空气并产生加热的热交换流体,第二热交换器加热驱动连接到发电机的涡轮机的烃流,其中发电机产生动力和废气,其中该方法需要泵送 通过第一热交换器的热交换流体; 与压缩空气进行热交换; 将加热的流体流分解成第二和第三热交换器; 使加热的流体流过与烃流交换热量的第二热交换器; 使加热的流体从第一热交换器流向第三热交换器; 并使用容器适应流体热膨胀。