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Fabrication and Joining of Ceramic Compact Heat Exchangers for Process Integration

机译:用于过程集成的陶瓷紧凑型热交换器的制造和连接

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Many energy conversion systems use thermal processes to convert chemical energy to mechanical or electrical energy. There are also many industrial processes performed at high temperature that produce excess heat. In both of these situations, heat exchangers can be used to recover thermal energy and make the processes more energy efficient. The more heat that can be recovered, the more efficient the process will be, so there is a strong demand for heat exchangers that operate at as high a temperature as possible. Ceramic heat exchangers permit operation at higher temperatures than with other materials. Additionally, compact heat exchangers are highly efficient and cost-effective. This paper will describe principles of design, methods of fabrication, and joining methods for ceramic compact heat exchangers for integration of such heat exchangers into practical applications.
机译:许多能量转换系统使用热过程将化学能转换为机械能或电能。在高温下还有许多工业过程会产生多余的热量。在这两种情况下,都可以使用热交换器回收热能,并使过程更加节能。可以回收的热量越多,该过程将越有效,因此强烈要求在尽可能高的温度下运行的热交换器。陶瓷热交换器允许在比其他材料更高的温度下运行。另外,紧凑型热交换器是高效且具有成本效益的。本文将介绍陶瓷紧凑型热交换器的设计原理,制造方法和连接方法,以将此类热交换器集成到实际应用中。

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