planning:thermal_protection:thermal_protection_works:insulation_works_-_evidence_no.1_measurements_at_a_highly_insulated_wall
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planning:thermal_protection:thermal_protection_works:insulation_works_-_evidence_no.1_measurements_at_a_highly_insulated_wall [2019/02/21 11:30] – cblagojevic | planning:thermal_protection:thermal_protection_works:insulation_works_-_evidence_no.1_measurements_at_a_highly_insulated_wall [2019/02/21 11:30] – cblagojevic | ||
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* This rapid increase in temperature is passed on to the next layer fitted with a sensor, 88 mm below the surface. However, this increase occurs with a certain delay and at a lesser rate: The temperature “only” increases by 0.75 degrees and only peaks at 6pm. | * This rapid increase in temperature is passed on to the next layer fitted with a sensor, 88 mm below the surface. However, this increase occurs with a certain delay and at a lesser rate: The temperature “only” increases by 0.75 degrees and only peaks at 6pm. | ||
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* The most outward layer of the brick wall only reaches its maximum temperature at 7pm and doesn’t exceed 23.8 degrees Celsius. At this level, there is also some influence from the exterior which is largely reduced by the thermal insulation but is noticeable nevertheless. This is mostly due to the fact that the temperatures on the outside of the brick wall are always below those at the internal surfaces.\\ | * The most outward layer of the brick wall only reaches its maximum temperature at 7pm and doesn’t exceed 23.8 degrees Celsius. At this level, there is also some influence from the exterior which is largely reduced by the thermal insulation but is noticeable nevertheless. This is mostly due to the fact that the temperatures on the outside of the brick wall are always below those at the internal surfaces.\\ | ||
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planning/thermal_protection/thermal_protection_works/insulation_works_-_evidence_no.1_measurements_at_a_highly_insulated_wall.txt · Last modified: 2022/01/25 10:53 by ggrosskopf