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Combining Radiant and Convective Systems with Thermal Mass for a More Comfortable Home

机译:将辐射和对流系统与热质量相结合,打造更舒适的家

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A residential radiant heating and cooling system has been operating and monitored in the Phoenix, Arizona, area for four years (2000-2004). It has demonstrated that controlling surface temperatures of both high and low mass envelope components can provide stable comfort conditions at a lower cost with less noise and higher air quality than a conventional air-handling system. The environmental system includes high mass walls, insulated on the exterior, and radiant panels in both the ceiling and the floor mass supplied by a hydronic source (ground-source heat pump). Low mass ceiling panels are used primarily for summer cooling, and the high mass floor panel system is used for both summer cooling and winter heating. The control strategy uses envelope thermal mass to keep the operative temperature of the space within the comfort envelope, using mostly off-peak electrical energy, with less than one hour ofon-peak compressor time per day. A system that uses radiant surface control in combination with thermal storage of the building's mass and a separate system for dehumidification and ventilation would appear to be the ultimate method for providing thermal comfort. It would provide indoor conditions, on a year-round basis, that one experiences on that "perfect" spring or fall day when the climate's diurnal cycle is in harmony with the building's envelope and creating surface/ air temperatures that are ideal for human comfort. Extensive details and performance data with animations can be found at http://support, caed. asu. edu/radiant.
机译:住宅辐射供热和制冷系统已在亚利桑那州菲尼克斯地区进行了四年的运行和监视(2000年至2004年)。已经证明,与传统的空气处理系统相比,控制高质量和低质量的信封部件的表面温度都可以以较低的成本提供稳定的舒适条件,并且噪声更少,空气质量更高。该环境系统包括在外部绝缘的高质量墙壁以及在天花板和地板上的辐射板,这些辐射板由水力源(地源热泵)提供。低质量的天花板面板主要用于夏季制冷,而高质量的地板系统则用于夏季制冷和冬季采暖。该控制策略使用包络线热质量将空间的工作温度保持在舒适包络线内,主要使用非高峰电能,每天的压缩机空压时间少于一小时。使用辐射表面控制结合建筑物质量的热量存储的系统以及用于除湿和通风的单独系统似乎是提供热舒适性的最终方法。它将全年提供室内条件,让人们在“完美”的春季或秋季的一天体验,气候的昼夜周期与建筑物的围护结构协调一致,并创造出最适合人类舒适的地表/空气温度。有关动画的大量详细信息和性能数据,请访问http://support.caed。阿苏edu / radiant。

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