It can be seen that the diurnal temperature variations in Paso Robles were pretty large in this duration. The outdoor dry- bulb temperatures in the four summer months from June to September in 2007 are shown in Figure 3. The real-time hour-by-hour weather data of Paso Robles were requested by email from the website of the U.S. The configurations of the building are listed in Table 1. The envelope thermal insulation level of the building meets the Climate Zone 3’s requirements provided in the 2010 version of the ANSI/ASHRAE/IES Standard 90.1. The south view (rendered in Revit) and the final floor plan of the building are shown in Figure 1 and Figure 2, respectively. In the exterior walls of the front zone, large curtain walls are installed, which means that this zone is almost transparent to the outdoor environment. The designed building can be divided into two zones: the front zone (consisting of the lobby, the waiting room, the reception room and the two restrooms) and the office zone (the three offices). This paper continues the investigation by applying a PWM (pulse- width modulation) control for the CT. , we investigated the possibility of natural cooling. The total floor area of 2 2 the building is 2310 ft (214.6 m ). The designed building is a stand-alone, one-story, south-facing, small commercial building equipped with Thermally Activated Building Systems (TABS) and CT. This kind of climate is preferred by thermally homeostatic buildings for achieving summer homeostasis by natural cooling (i.e., using cooling tower alone). designed such a building located in Paso Robles, California, which has a special climate with very large diurnal temperature swing in summers because of the sea breeze from the Monterey Bay. The two papers proposed a two-step process assumption-based (dynamic) design method for the development of a thermally homeostatic building: first thermal autonomy and then thermal homeostasis. homeostatic building is a new building concept developed in two recently articles.
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