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Factors affecting the insulation value of sleeping bag systems.

机译:影响睡袋系统隔热值的因素。

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摘要

The purpose of this project was (1) to evaluate the effect of filling material variables, bag construction variables, and the use of auxiliary products on the insulation provided by sleeping bag systems and (2) to develop regression equations for estimating the insulation value of sleeping bag systems from bag, clothing, and pad variables. Prototype bags were constructed with material and construction variables controlled at the same level except for the independent variable to be studied. In addition, five thicknesses of pads, three levels of clothing insulation, and five levels of bag insulation were evaluated in all possible combinations to determine their effects on bag system insulation. The effects of other auxiliary products such as pillows, liners, and hats were studied also. The thermal insulation value of a sleeping bag system was measured according to ASTM F 1720-96, Standard Test Method for Measuring the Thermal Insulation of Sleeping Bags Using a Heated Manikin. The weight, thickness, and packing volume of the bags were measured, and the insulation per unit weight and insulation per unit thickness were calculated.; The amount of down, the fill power of down, baffle height, and fill ratio had an effect on bag insulation, as did the type and amount of synthetic fiberfill. Bag construction (layered, shingle) and design features such as draft tubes, neck collars, and bag shape affected bag insulation also. The use of auxiliary products such as pads, clothing, pillows, bag liners, etc. increased the insulation of the bag system---particularly the use of pads.; Regression equations were developed for predicting the insulation of a sleeping bag system (with or without clothing) that explained 99% of the variance in insulation with an accuracy of +/-0.3 clo. The equations used clothing insulation, pad thickness, and either bag insulation or bag thickness and weight as input variables. Manufacturers can use the regression equations to predict the insulation of their sleeping bags when used with different types of clothing and/or pad thicknesses for the purpose of determining temperature ratings with heat loss models.
机译:该项目的目的是(1)评估填充材料变量,袋子构造变量以及辅助产品对睡袋系统提供的隔热效果的影响,以及(2)制定回归方程式以估算保温袋的隔热值睡袋系统,包括袋子,衣物和护垫变量。原型袋的材料和构造变量控制在同一水平,但要研究的自变量除外。另外,以所有可能的组合评估了五种垫层的厚度,三层衣物的隔热性和五层袋的隔热性,以确定它们对袋系统隔热性的影响。还研究了其他辅助产品(如枕头,衬里和帽子)的效果。睡袋系统的隔热值是根据ASTM F 1720-96,“使用加热的人体模型测量睡袋的绝热性的标准测试方法”进行测量的。测量袋的重量,厚度和包装体积,并计算每单位重量的绝缘和每单位厚度的绝缘。绒毛的数量,绒毛的填充能力,折流板高度和填充比对袋子的隔热性都有影响,合成纤维填充物的类型和数量也有影响。袋子的结构(分层,带状)和设计特征(例如引流管,领口和袋子形状)也会影响袋子的绝缘性。使用辅助产品,例如垫子,衣服,枕头,袋子内衬等,增加了袋子系统的绝缘性-特别是使用了垫子。开发了用于预测睡袋系统(带或不带衣服)的隔离度的回归方程,该方程解释了99%的隔离度变化,精度为+/- 0.3 clo。这些方程式使用衣服的隔热性,衬垫的厚度以及袋子的隔热性或袋子的厚度和重量作为输入变量。制造商可以使用回归方程式预测与不同类型的衣服和/或护垫厚度一起使用时其睡袋的隔热性,以通过热损失模型确定额定温度。

著录项

  • 作者

    Zuo, Jing.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Textile Technology.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 112 p.
  • 总页数 112
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 轻工业、手工业;
  • 关键词

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