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Influence of Solar Radiation Heat Input into Room on Level of Economically-efficient Thermal Protection of Building

机译:太阳辐射热输入将太阳辐射热量输入到大厦经济上有效的热保护水平

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Techniques for choosing an energy and economically feasible thermal protection of buildings in the climatic conditions of Moscow are discussed earlier.An important basis of these techniques is that it was possible to identify the thermal parameters on the basis of which the generalization of the basic energy and economic indicators of the building,depending on its thermal protection,was carried out.The methods were tested for buildings whose working day lasts from 9 am to 6 pm with various internal heat generation.In this case,it was believed that solar radiation is completely obscured.From consideration of the effect of heat gains on energy-efficient thermal protection,it was found that with increasing heat gains,the load on heating systems decreases regardless of the level of heat protection,and the load on the room cooling systems increases more with higher thermal protection than with low thermal protection.However,there are buildings of a number of functional purposes in which solar radiation is partially obscured or not obscured at all.These include some commercial,residential and other buildings.Accounting for heat gains from solar radiation,with variable intensity throughout the year,makes significant adjustments to the choice of the level of thermal protection.This is due to the fact that often cooling of the room is required during periods when the outside air temperature is below the maximum allowable temperature of the room.During these periods,enhanced thermal protection is an obstacle to the natural outflow of heat from the premises.Calculations showed that the higher the heat gain from solar radiation,the smaller the proportion of buildings it is energetically feasible to warm according to the basic standards stipulated in SP 50.13330.2012.And although it is not energetically feasible to carry out thermal insulation for sanitary and hygienic requirements,the conclusions about the benefits of building insulation with reduced heat transfer to the walls and coatings of a building are economically significant.It is also important that when identifying an economically feasible thermal protection of a building,it is necessary to take into account all the components of financial expenses that are affected by the thermal protection of a building.The calculations also showed that an increase in the cost of heat and electricity over time changes the thermal performance of buildings for which this or that thermal protection is economically feasible.
机译:早先讨论了在莫斯科的气候条件下选择能量和经济上可行的热保护建筑物的技术。这些技术的重要基础是,可以基于该技术的基础能量的泛化来识别热参数根据其热保护的建筑物的经济指标进行。该方法测试了工作日持续上午9点至下午6点的建筑物,具有各种内部发热。在这种情况下,它被认为是太阳辐射完全从考虑到热量效果对节能热保护的影响,发现随着热量增加的增加,无论热保护水平如何,加热系统的负荷都会降低,并且房间冷却系统的负荷增加更多热保护比低热保护更高。然而,有许多功能目的的建筑物AR辐射完全被遮挡或未遮挡。这些包括一些商业,住宅和其他建筑物。从太阳辐射的热量增加,全年具有可变强度,对热保护水平进行了重大调整。这由于外部空气温度低于房间的最大允许温度,通常需要在房间的最大允许温度的时期需要冷却房间的事实。在这些时期,增强的热保护是来自房屋的热量自然流出的障碍。计算结果表明,根据SP 50.13330.2012规定的基本标准,太阳辐射的热量增益越高,建筑物的比例越越大,虽然对卫生保温并不能力,但虽然卫生的隔热性并不能力和卫生要求,关于建筑绝缘的益处的结论,将热传递减少到墙壁建筑物的涂层是经济上的重要意义。对于识别建筑物的经济上可行的热保护时,还必须考虑受建筑物的热保护影响的所有财务费用的组件。该计算还表明,随着时间的推移,热量和电力成本的增加会改变其中的建筑物的热性能,或者热保护在经济上可行的建筑物的热性能。

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