Analyzing observations of wintertime air temperature in both indoor and outdoor surroundings in Kunming, a city lying in low latitudes, characteristics of temperature and humidity have been studied for the interior of...Analyzing observations of wintertime air temperature in both indoor and outdoor surroundings in Kunming, a city lying in low latitudes, characteristics of temperature and humidity have been studied for the interior of rooms facing north-south under different weather conditions. Significant warming effect has been identified in terms of lowest and daily-mean indoor temperature in the area of Kunming. The heating amplitude ranges from 7.7C to 10.0C and from 4.6C to 5.8C for the interior part of rooms facing the south and from 4.6C to 7.0C and from 1.3C to 4.4C for the interior part of rooms facing the north, respectively for the two elements. The highest air temperature is higher indoor than outdoor for rooms facing the south, but otherwise is usually true for rooms facing the north. Additional findings point out that buildings not only help maintain relatively warm indoor temperature but delay its variation. The diurnal cycle of temperature indoor is smaller and ranges by 40% ~ 48% for south-facing rooms, and by 20% ~ 30% for north-facing rooms, than outdoor, and the highest temperature is about 2 hours late inside the room than outside. It shows how inertly indoor temperature varies. The work also finds that relative humidity is less indoor in southward rooms than in northward ones and difference is the largest on fine days but the smallest when it is overcast. For the diurnal variation, the indoor relative humidity is large at nighttime with small amplitude but small during daytime with large amplitude. The above-presented results can be served as scientific foundation for more research on climate in low-latitude cities and rational design of urban architectures.展开更多
人为热排放对城市边界层气候效应的影响起着举足轻重的作用。在人为热源的组成中,建筑物内部的能源消耗、热量产生以及室内外热量传输与交换,对于城市热环境的改变有着非常重要的作用。因此,为研究室内空调系统的产热和通过屋顶、墙面...人为热排放对城市边界层气候效应的影响起着举足轻重的作用。在人为热源的组成中,建筑物内部的能源消耗、热量产生以及室内外热量传输与交换,对于城市热环境的改变有着非常重要的作用。因此,为研究室内空调系统的产热和通过屋顶、墙面、地面进行室内外热量传输扩散,并对室外热环境产生的影响,运用WRF(Weather Research and Forecasting Model)模式,选取BEP+BEM城市冠层参数化方案,即基于多层城市冠层方案BEP(Building Effect Parameterization)增加室内空调系统影响的建筑物能量模式BEM(Building Energy Model)的方案,以南京2010年8月2—3日,夏季三伏天晴天小风天气作为背景天气进行模拟研究。结果表明,采用WRF模式考虑空调系统室内、外能量交换的BEP+BEM参数化方案,能够更好地模拟出夏季晴天城市近地层气温。当假设空调全天开启时,白天模拟值与观测值吻合较好。夜间温度模拟值高于观测值,在22时—次日00时(北京时),存在1℃左右的偏差。白天空调系统开启对于城市近地层气温的影响不明显,而夜间使得城市气温普遍升高0.6℃,尤其是在居民区密集的地方,22—23时最大有2℃左右的升温。当调整室内空调目标温度从25℃调至27℃时,空调系统能量总释放量减少12.66%,13—16时温度下降最大,平均约为1℃,建筑物越是密集,温度下降幅度越大。展开更多
文摘Analyzing observations of wintertime air temperature in both indoor and outdoor surroundings in Kunming, a city lying in low latitudes, characteristics of temperature and humidity have been studied for the interior of rooms facing north-south under different weather conditions. Significant warming effect has been identified in terms of lowest and daily-mean indoor temperature in the area of Kunming. The heating amplitude ranges from 7.7C to 10.0C and from 4.6C to 5.8C for the interior part of rooms facing the south and from 4.6C to 7.0C and from 1.3C to 4.4C for the interior part of rooms facing the north, respectively for the two elements. The highest air temperature is higher indoor than outdoor for rooms facing the south, but otherwise is usually true for rooms facing the north. Additional findings point out that buildings not only help maintain relatively warm indoor temperature but delay its variation. The diurnal cycle of temperature indoor is smaller and ranges by 40% ~ 48% for south-facing rooms, and by 20% ~ 30% for north-facing rooms, than outdoor, and the highest temperature is about 2 hours late inside the room than outside. It shows how inertly indoor temperature varies. The work also finds that relative humidity is less indoor in southward rooms than in northward ones and difference is the largest on fine days but the smallest when it is overcast. For the diurnal variation, the indoor relative humidity is large at nighttime with small amplitude but small during daytime with large amplitude. The above-presented results can be served as scientific foundation for more research on climate in low-latitude cities and rational design of urban architectures.
文摘人为热排放对城市边界层气候效应的影响起着举足轻重的作用。在人为热源的组成中,建筑物内部的能源消耗、热量产生以及室内外热量传输与交换,对于城市热环境的改变有着非常重要的作用。因此,为研究室内空调系统的产热和通过屋顶、墙面、地面进行室内外热量传输扩散,并对室外热环境产生的影响,运用WRF(Weather Research and Forecasting Model)模式,选取BEP+BEM城市冠层参数化方案,即基于多层城市冠层方案BEP(Building Effect Parameterization)增加室内空调系统影响的建筑物能量模式BEM(Building Energy Model)的方案,以南京2010年8月2—3日,夏季三伏天晴天小风天气作为背景天气进行模拟研究。结果表明,采用WRF模式考虑空调系统室内、外能量交换的BEP+BEM参数化方案,能够更好地模拟出夏季晴天城市近地层气温。当假设空调全天开启时,白天模拟值与观测值吻合较好。夜间温度模拟值高于观测值,在22时—次日00时(北京时),存在1℃左右的偏差。白天空调系统开启对于城市近地层气温的影响不明显,而夜间使得城市气温普遍升高0.6℃,尤其是在居民区密集的地方,22—23时最大有2℃左右的升温。当调整室内空调目标温度从25℃调至27℃时,空调系统能量总释放量减少12.66%,13—16时温度下降最大,平均约为1℃,建筑物越是密集,温度下降幅度越大。