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Energy consumption for heating and rebound effects

机译:加热和回弹效果的能耗

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摘要

When comparing calculated heating consumption in residential buildings assuming standard usage with standardized measured data, then the two typically does not fit. In fact, measured consumption may be a fraction only of what was calculated. The reason is direct rebound behavior by the inhabitants. The paper shows the importance of direct rebound through measured results. First the temperatures, recorded in daytime and sleeping rooms in a sample of dwellings, are commented. Then follows a discussion of the indoor temperatures found when calculated energy consumptions for heating were forced to give the same numbers as measured. Next, two small scale analyses of energy data gained in low-income estates are commented, followed by test results on direct rebound in two dwellings, one non-insulated, the other well insulated. These data prove that the benefits of direct rebound are much larger in non-insulated than in well insulated homes. That fact is used to construct a rebound curve, starting from the normalized consumption data gained in 964 houses. The paper ends by showing the effect of energy price on direct rebound.
机译:将假设标准用法的住宅建筑中的热量消耗与标准化的测量数据进行比较时,通常两者都不适合。实际上,测得的消耗可能只是计算出来的一部分。原因是居民直接反弹行为。本文通过测量结果表明了直接反弹的重要性。首先,对白天(在白天和卧室中记录在住宅样本中)记录的温度进行注释。然后是对室内温度的讨论,当强迫计算的供暖能耗被赋予与实测值相同的数字时,室内温度将被发现。接下来,评论了两次对低收入阶层获得的能源数据进行的小规模分析,然后给出了两处住宅(其中一处是非绝缘的,另一处是绝缘的)的直接反弹的测试结果。这些数据证明,在非绝缘房屋中,直接反弹的好处要比在绝缘良好的房屋中大得多。从964栋房屋获得的标准化消费数据开始,就可以使用该事实构建反弹曲线。本文最后以能源价格对直接反弹的影响为结尾。

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