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Air heating system design for a sub-Arctic climate using a CFD technique

机译:使用CFD技术的亚北极气候空气加热系统设计

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The thermal comfort in a residential building equipped with an air heating system and located in a sub-Arctic region was investigated with computational fluid dynamics (CFD) software. The predicted percentage of dissatisfied (PPD) was used to identify flaws with the heating system during winter conditions. New scenarios were simulated and compared to each other to see potential improvements of the thermal indoor climate. Comparison was done by combining the discomfort spaces inside rooms, the level of the discomfort and the time spent in these spaces. The discomfort covered 8-38% of the interior volume depending on the test case.The results provide the necessary means to create a satisfactory thermal indoor climate if an air heating system is to be utilized in sub-Arctic regions during the winter. The correct heat demand for each floor and appropriate placement of the supply devices are required. Adding air transfer units or grilles in rooms from which exhaust air is removed further improves the comfort. The results also show the strength of using CFD technique when investigating the indoor discomfort with PPD, and how a fair assessment can be done by combining the PPD with time.
机译:采用计算流体动力学(CFD)软件,研究了配备有空气加热系统并位于亚北极区域的居住建筑中的热舒适度。预测百分比的不满(PPD)用于在冬季条件下用加热系统识别漏洞。模拟新场景并相互比较,以便看到热室内气候的潜在改进。通过将不适的空间组合在房间内,不适的水平和这些空间所花费的时间来完成比较。根据测试案例,不适覆盖了8-38%的内部容积。结果提供了如果在冬季亚北极地区使用空气加热系统,则提供了创造令人满意的热室内气候的必要手段。需要对每个楼层的正确热需求和供应装置的适当放置。在除去废气的房间中添加空气转移单元或烤架进一步提高了舒适性。结果还表明使用CFD技术在研究PPD时使用CFD技术,以及如何通过将PPD与时间组合来完成公平评估。

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