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Hemp-Lime Performance in Danish Climatic Context. Thermal Conductivity as a Function of Moisture Content

机译:丹麦气候背景下的大麻石灰表现。导热系数作为含水量的函数

摘要

In order to fit low energy building policies and reduce environmental impact of buildings, construction materials must have good balance between thermal properties and embodied energy. By using such materials, reduction of both operational and embodied energy are achieved simultaneously.Hemp concrete is a bio-based building material composed of the woody core of industrial hemp and lime based binder. It is a non-load-bearing material, which can be used as floor and around structural frames for walls and roof. The material is characterized by relatively low environmental impact, moderate thermal properties and, high air and moisture permeability. The properties vary with binder composition, mixing and casting techniques, as well as intended application.This research presents preliminary heat and moisture building simulations of single family house made out of hemp-lime composite. To evaluate the performance of hemp-lime, it is compared to models with common external walls, upon defined parameters.The article also determines the variation of thermal conductivity for hemp-lime commercial plaster and wall mix, as a function of moisture content. The most promising binder composition and mixing proportions for the wall mixture are identified through literature review; thereafter samples for the experiment are prepared and tested in laboratory environment. Thermal conductivity is found by using Hot Plate Apparatus λ-meter EP500, while moisture dependence is established upon testing samples with different moisture content.Results from the experiments show non-linear increase in thermal conductivity with increase in moisture content. The results and potential benefits of using hemp-lime are discussed and conclusions are drawn.
机译:为了适应低能耗的建筑政策并减少建筑物对环境的影响,建筑材料必须在热性能和体现的能量之间保持良好的平衡。通过使用这种材料,同时降低了运行和实现的能量。大麻混凝土是一种生物基建筑材料,由工业麻的木芯和石灰基粘合剂组成。它是一种非承重材料,可用作地板以及墙壁和屋顶的结构框架周围。该材料的特点是相对较低的环境影响,适度的热性能以及较高的透气性和透湿性。其性能随粘合剂的组成,混合和浇铸技术以及预期的应用而变化。本研究提供了由麻灰复合材料制成的单户住宅的初步热和湿气模拟建筑。为了评估大麻石灰的性能,将其与具有普通外墙的模型进行了比较,并定义了参数。本文还确定了大麻石灰商用石膏和墙壁混合物的导热系数随水分含量的变化。通过文献综述确定了最有前途的墙面混合物的粘结剂组成和混合比例。然后准备实验样品并在实验室环境中进行测试。通过使用热板仪器λ计EP500可以找到热导率,而水分依赖性则取决于测试不同水分含量的样品。实验结果表明,随着水分含量的增加,热导率呈非线性增加。讨论了使用大麻石灰的结果和潜在好处,并得出了结论。

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