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首页> 外文期刊>International journal of numerical methods for heat & fluid flow >An analytical method for spiral-wound heat exchanger: design and cost estimation considering temperature-dependent fluid properties
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An analytical method for spiral-wound heat exchanger: design and cost estimation considering temperature-dependent fluid properties

机译:螺旋缠绕热交换器的分析方法:考虑温度依赖性流体性能的设计和成本估算

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摘要

Purpose - Spiral-wound heat exchangers (SWHEs) are widely used in different industries. In special applications, such as cryogenic (HEs), fluid properties may significantly depend on fluid temperature. This paper aims to present an analytical method for design and rating of SWHEs considering variable fluid properties with consistent shell geometry and single-phase fluid. Design/methodology/approach - To consider variations of fluid properties, the HE is divided into identical segments, and the fluid properties are assumed to be constant in each segment. Validation of the analytical method is accomplished by using three-dimensional numerical simulation with shear stress transport k-ω model, and the numerical model is verified by using the experimental data. Moreover, the HE cost is selected as the main criterion in obtaining the proper design, and the most affordable geometry is selected as the proper design. Findings - The accuracy of different heat transfer and pressure drop correlations is investigated by comparing the analytical and numerical results. The average errors in the calculation of effectiveness, shell-side pressure drop and tube-side pressure drop using the analytical method are 2.1%, 13.9% and 13.3%, respectively. Moreover, the effect of five main geometrical parameters on the SWHE cost is investigated. The results indicate that the effect of longitudinal pitch ratio on the SWHE cost can be neglected, whereas other geometrical parameters have a significant impact on the total cost of the SWHE. Originality/value - This work contains a versatile and low-cost analytical method to design and rating the SWHEs considering the variable fluid property with consistent shell geometry. The previous studies have introduced complex methods and have not considered the consistency of shell geometry.
机译:目的 - 螺旋缠绕式热交换器(SWHEs)广泛地用于在不同的行业。在特殊的应用中,如低温(HES),流体性质可以显著取决于流体温度。本文旨在提出用于设计和考虑与一致的壳的几何形状和单相流体可变流体特性SWHEs的等级的分析方法。设计/方法/方法 - 要考虑流体性质的变型中,HE分为相同的段,和流体属性被假设为在每个段是恒定的。分析方法的验证是通过使用三维数值模拟随剪切应力运输K-ω模型来完成,并数值模型是通过使用实验数据证实。另外,HE成本被选择为在获得适当的设计的主要标准,和最经济实惠的几何形状被选择为适当的设计。调查结果 - 不同的热传递和压降的相关性的精确度是通过比较分析和计算结果的影响。在有效性的计算平均误差,外壳侧压力降,并使用分析方法管侧压降分别为2.1%,13.9%和13.3%。此外,五个主要几何参数对SWHE费用的影响进行了研究。结果表明,纵向间距比对SWHE成本的效果可以忽略,而其它几何参数对SWHE的总成本显著影响。独创性/价值 - 这项工作包括设计一个多功能,低成本的分析方法和评级考虑与外壳一致的几何形状可变流体属性SWHEs。以前的研究已经推出复杂的方法,并没有考虑壳的几何形状的一致性。

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