...
首页> 外文期刊>Innovative Infrastructure Solutions >Thermal energy storage cement mortar with direct incorporation of organic and inorganic phase change materials
【24h】

Thermal energy storage cement mortar with direct incorporation of organic and inorganic phase change materials

机译:热能储存水泥砂浆,直接掺入有机和无机相变材料

获取原文
获取原文并翻译 | 示例
           

摘要

Direct incorporation of phase change materials (PCMs) in the mortar matrix increases the effective thermal mass of a structure without increasing the size or significantly changing its weight; thereby reduces the energy consumption and brings comfort/well-being throughout the various seasons. Hence, the effect of direct incorporation of various types of PCMs in a mortar matrix needs to be addressed to optimize PCM addition and its type. In the present study, five different PCMs, two in-organic, and three organics were directly incorporated into the cement matrix from 5 to 15% as partial replacement of cement. Various studies such as compressive strength, flexural strength, acid and sulphate attack, Differential scanning calorimetry (DSC) analysis, Fourier transform infrared spectroscopy, thermal conductivity, stability of PCM (1000 thermal cycle test), thermal performance, and leakage test were conducted. Organic (n-BS, PEG-600, and OM29) PCMs have significantly decreased the strength of cement mortar with a peak reduction of 74% for HS24 (15%); whereas inorganic (HS24 and HS29) PCMs gave considerably equal strength of conventional mortar up to 10 wt%. A statistical technique using Minitab was used to validate the actual experimental values (compressive strength of HS24) with predicted values, and it was observed that the error in experimental values and the predicted values is less than 5% for 28 and 60 days curing thereby showing a confidence level of 95%. Acid attack tests on mortar specimens with PCMs gave a drastic reduction in compressive strength at 90 days. DSC analysis was conducted on all pure PCM materials and found that its temperature range and enthalpy exist in the human comfort zone. The stability for HS24 gave an enthalpy of 145.8 J/g and 122.6 J/g for melting and freezing point after 1000 cycles. The temperature variation of organic PCMs was nearly the same as normal cement mortar, and the maximum reduction of 5 degrees C was attained with inorganic PCMs. No leakage was observed for HS24, n-BS, and HS29 PCMs.
机译:在砂浆基质中直接掺入砂浆基质中的相变材料(PCM)增加了结构的有效热质量,而不会增加尺寸或显着改变其重量;因此,减少了能量消耗,在各种季节中带来舒适/福祉。因此,需要解决各种类型的PCM的直接掺入的效果需要解决以优化PCM添加及其类型。在本研究中,五种不同的PCM,两种不同的PCM,两种有机物和三种有机物直接掺入水泥基质中,从5%掺入水泥基质中,作为水泥的部分替代。各种研究,如抗压强度,弯曲强度,酸和硫酸盐攻击,差动扫描量热法(DSC)分析,傅里叶变换红外光谱,导热率,PCM稳定性(1000个热循环试验),热性能和漏漏试验。有机(N-BS,PEG-600和OM29)PCMS显着降低了水泥砂浆的强度,HS24的峰值降低了74%(15%);然而,无机(HS24和HS29)PCMS的常规砂浆的相当强度高达10wt%。使用Minitab的统计技术用于验证具有预测值的实际实验值(HS24的压缩强度),并且观察到实验值中的误差和预测值的误差小于5%,从而显示为28和60天。显示置信水平为95%。用PCM的砂浆样品上的酸攻击试验在90天内产生抗压强度的急剧降低。 DSC分析在所有纯PCM材料上进行,发现其温度范围和焓存在于人类舒适区中。 HS24的稳定性在1000次循环后得到145.8J / g的焓为145.8J / g和122.6J / g,用于熔化和冷冻点。有机PCM的温度变化与正常水泥砂浆几乎相同,并且使用无机PCM获得5摄氏度的最大减少。 HS24,N-BS和HS29 PCM没有观察到没有泄漏。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号