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Prediction of Optimum Thermal Insulation Thickness for Oil and Gas Process Piping and Equipments Using Simple Method

机译:使用简单方法预测油气工艺管道管道和设备的最佳绝热厚度

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摘要

Selection and determination of optimum thickness of insulation is of prime interest for many engineering applications. In this study, a simple method is developed to estimate the thickness of thermal insulation required to arrive at a desired heat flow or surface temperature for flat surfaces, ducts and pipes. The proposed simple method, which is easier than current available models involving a large number of parameters, requiring more complicated and longer computations, covers the temperature difference between ambient and outside temperatures up to 250°C and the temperature drop through insulation up to 1000°C. The proposed correlation calculates the thermal thickness up to 250 mm for flat surfaces and estimates the thermal thickness for ducts and pipes with outside diameters up to 2400 mm. The accuracy of the proposed method was found to be in excellent agreement with the reported data for wide range of conditions where the average absolute deviation between reported data and the proposed method is around 3.25%. The method is based on basic fundamentals of heat transfer and reliable data. Therefore the formulated simple-to-use expression is justified and applicable to any industrial application. The correlation proposed in the present work is novel and unique expression which is non-existent in the literature. This is expected to benefit and making design decisions which could lead to informed decisions on the selection of optimum insulation thickness for a given application in any process industry.
机译:保温的最佳厚度的选择和确定是许多工程应用中的主要关注点。在这项研究中,一个简单的方法进行显影,以估计在所期望的热流或表面温度为平坦表面,管道和管道到达所需的热绝缘层的厚度。所提出的简单的方法,这是比涉及大量的参数,因此需要更复杂和更长的计算当前可用的模型更容易,覆盖高达250℃,并通过绝缘起来的温度下降到1000的环境温度和外部温度之间的温度差° C。所提出的相关性计算出的热厚度高达250毫米的平坦表面并估计管道和管道与外径高达2400毫米热厚度。所提出的方法的精确度被认为是与用于宽范围的条件下报告的数据非常一致,其中报告的数据和所提出的方法之间的平均绝对偏差为约3.25%。该方法是基于热传递和可靠的数据的基本原理。因此,配制简单易用的表达是有道理的和适用于任何工业应用。在目前的工作中提出的相关性是新颖的和独特的表达,其是在文献中不存在。这是有望受益和设计决策可能导致的最佳保温层厚度的选择,在任何过程中行业特定应用明智的决定。

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