首页> 外文期刊>GeoScience Engineering >An Update of a Simulation Study of Passively Heated Residential Buildings
【24h】

An Update of a Simulation Study of Passively Heated Residential Buildings

机译:被动加热住宅建筑模拟研究的更新

获取原文
           

摘要

a??A simulation study of passively heated residential buildingsa?? published in Procedia Engineering 2015 showed how circulating 15-17?°C water from a 50-m deep U-tube to a floor radiator and solar-heated water from a 30 evacuated tube solar collector and a 2-m3 indoor tank to a wall radiator could keep a 30-m2 Melbourne, Australia house thermally comfortable. This paper presents a summary of the ongoing review of publications together with three updates: - (1) Report on that water heated by a 100-metre deep U-tube is 22-24?°C, i.e., 2-4 ?°C warmer than thermal comfort temperature. (2) May 2016 experimental validations of the simulated results which show that when the outdoors is below 10?°C, the temperature of the floor radiator is 2-4?°C less than the 15-17?°C water heated by a 50-m deep U-tube and 25 W fish tank pumps could circulate the waters. (3) Simulations with the addition of phase change materials (PCM) to inside faces show that though a PCM halves the diurnal indoor temperature variations, it confirms that such PCM does not significantly increase the 20?°C temperature in a 2-m3 storage tank at the end of winter. Therefore, the size of intersessional thermal storage would be a problem for family-sized houses. German Guidelines indicate that 1-2 boreholes could provide enough heat for family-sized houses. The heat extracted in winter can be replenished in summer. Thus the geothermal heat from about 100-m deep boreholes with 22-24?°C bottom temperature could sustainably keep residential buildings in cool climates similar to Melbourne's cool temperate thermally comfortable.
机译:被动加热住宅建筑的模拟研究在Procedia Engineering 2015上发表的论文显示了如何将15-17°C的水从50米深的U型管循环到地板散热器,以及将太阳能热水从30个真空管的太阳能集热器和2 m3的室内水箱循环到墙。散热器可以使澳大利亚墨尔本的30平方米房屋保持热舒适。本文对出版物进行了综述,并作了三处更新:-(1)报告说,用100米深的U型管加热的水为22-24°C,即2-4°C高于热舒适温度。 (2)2016年5月对模拟结果进行的实验验证,结果表明,当室外温度低于10°C时,地面散热器的温度要比通过散热器加热的15-17°C水少2-4°C。 50米深的U型管和25 W的鱼缸泵可以使水循环。 (3)在内表面添加相变材料(PCM)的模拟表明,尽管PCM将室内的昼夜温度变化减半,但可以确认这种PCM在2 m3的存储中不会显着提高20°C的温度坦克在冬天结束时。因此,对于家庭大小的房屋而言,闭会期间的热存储的大小将是一个问题。德国指南指出,1-2个钻孔可以为家庭大小的房屋提供足够的热量。冬季提取的热量可以在夏季补充。因此,底部温度约为22-24?C的约100m深井孔产生的地热可以使住宅建筑物保持凉爽的气候,类似于墨尔本凉爽的温带热舒适性。

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