Analysis of the thermal behavior of Masonry Concrete Block with Internal Natural Element Coating

Luiza Malvessi Lagemann, H. C. D. Silva, Luciana Turatti, R. Spinelli
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Abstract

The search for constructive forms that are less aggressive to the environment has become increasingly relevant, in view of the scarcity of natural resources and population growth. With the current energy and environmental scenario in the world, it is possible to say that the situation is delicate, given the demand for energy by the population and the dependence on exhaustible natural resources and polluting the environment for it to be produced. This exacerbated use of energy can be related to the generation of artificial air conditioning for the thermal comfort of the inhabitants. In order to mitigate energy consumption inside buildings, this study aims to analyze the internal temperature of the environment after inserting the corn stalk inside the empty spaces of the concrete block used for conventional masonry. To verify the thermal performance of the concrete block filled with corn stalks, 5 prototypes were built with different constituent materials, and the internal temperatures were recorded using datalogger devices. The temperature analyzes took place in the spring, in the months of October and November, totaling 39 days of data collection, and through these data, it was possible to identify that yes, the junction of the manually molded concrete block and the filling of the corn stalk showed an improvement in the internal thermal performance in the prototypes built with this material.
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内涂天然元素砌块的热性能分析
鉴于自然资源的匮乏和人口的增长,寻求对环境危害较小的建设性形式已变得日益重要。鉴于目前世界上的能源和环境情况,考虑到人口对能源的需求以及对可耗尽的自然资源的依赖和对环境的污染,可以说情况是微妙的。这种加剧的能源使用可能与为居民提供热舒适而产生的人工空调有关。为了减少建筑内部的能源消耗,本研究旨在分析将玉米秸秆插入传统砌体混凝土块的空腔后环境的内部温度。为了验证玉米秸秆填充混凝土砌块的热性能,采用不同的组成材料构建了5个原型,并使用数据记录仪记录了内部温度。温度分析是在春季进行的,在10月和11月,总共收集了39天的数据,通过这些数据,可以确定,是的,手工模压混凝土块和玉米秸秆填充的连接处显示出用这种材料建造的原型的内部热性能有所改善。
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