Uncertainty estimation of the mean specific heat capacity for the major gases contained in biogas

Q3 Agricultural and Biological Sciences Research in Agricultural Engineering Pub Date : 2020-06-29 DOI:10.17221/4/2020-rae
P. Trávnícek, I. Vitázek
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引用次数: 1

Abstract

The paper is focused on the uncertainty estimation of the mean isobaric and isochoric specific heat capacity calculation. The differences in the data among the individual sources for the technical calculation are presented in the first part of the paper. These differences are discussed in this paper. Research of scientific work with listed values of measurement uncertainties has been carried out in the second part of the paper. Furthermore, mathematical models were calculated which describe the dependence of the specific heat capacities and temperature. The maximal error models were carried out. Two approaches were used for the calculation of the mean specific heat capacity. The first approach is the calculation with help of integration of the function which describes the dependence of the specific heat capacity and temperature. The second approach is the calculation of a simple arithmetic mean of the specific heat capacity related to the maximal and minimal value of the temperature interval. The conclusion of the work shows that the time-effective second way is applicable in the case of a narrow temperature range. A value of 5.5% (Δt = 200 K) was reached for the relative uncertainty. This is a similar value to that in the case of using the first way.
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沼气中主要气体平均比热容的不确定度估计
本文重点讨论了平均等压比热容计算和等时比热容计算的不确定性估计。本文的第一部分介绍了技术计算的各个来源之间数据的差异。本文对这些差异进行了讨论。本文第二部分对测量不确定度列值的科学工作进行了研究。此外,还建立了描述比热容与温度关系的数学模型。建立了最大误差模型。用两种方法计算了平均比热容。第一种方法是利用描述比热容与温度的依赖关系的函数的积分进行计算。第二种方法是计算与温度区间的最大值和最小值有关的比热容的简单算术平均值。研究结果表明,时效性第二种方法适用于较窄温度范围的情况。相对不确定度达到5.5% (Δt = 200 K)。这与使用第一种方法时的值相似。
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来源期刊
Research in Agricultural Engineering
Research in Agricultural Engineering Engineering, agriculture-
CiteScore
1.40
自引率
0.00%
发文量
21
审稿时长
24 weeks
期刊介绍: Original scientific papers, short communications, information, and studies covering all areas of agricultural engineering, agricultural technology, processing of agricultural products, countryside buildings and related problems from ecology, energetics, economy, ergonomy and applied physics and chemistry. Papers are published in English.
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