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Heat Exchanger Design for the Process Industries

机译:流程行业的热交换器设计

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摘要

The design process for heat exchangers in the process industries and for similar applications in the power and large-scale environmental control industries is described. Because of the variety of substances (frequently multicomponent, of variable and uncertain composition, and changing phase) to be processed under wide ranges of temperatures, pressures, flow rates, chemical compatibility, and fouling propensity, these exchangers are almost always custom-designed and constructed. Many different exchanger configurations are commercially available to meet special conditions, with design procedures of varying degrees of reliability. A general design logic can be applied, with detailed procedures specific to the type of exchanger. The basis of the design process is first a careful and comprehensive specification of the range of conditions to be satisfied, and second, organized use of a fundamentally valid and extrapolatable rating method. The emphasis in choosing a design method is upon rational representation of the physical processes, rather than upon high accuracy. Finally, the resultant design must be vetted in detail by the designer and the process engineer for operability, flexibility, maintainability, and safety.
机译:描述了过程工业中热交换器的设计过程以及在电力和大规模环境控制工业中类似应用的设计过程。由于要在很宽的温度,压力,流速,化学相容性和结垢倾向范围内进行处理的物质种类繁多(通常是多组分,组成可变且不确定的成分以及相变),因此这些交换器几乎总是按客户要求设计和制造的建造。市场上有许多不同的交换器配置可满足特殊条件,其设计程序具有不同程度的可靠性。可以应用通用的设计逻辑,并使用特定于交换器类型的详细过程。设计过程的基础首先是对要满足的条件范围进行仔细而全面的说明,其次是有组织地使用从根本上有效且可推断的评级方法。选择一种设计方法的重点在于物理过程的合理表示,而不是高精度。最后,最终的设计必须由设计者和过程工程师详细审查,以确保可操作性,灵活性,可维护性和安全性。

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