Experimental Investigation on the Ground Temperature Profile for Shallow Geothermal Energy Applications in a Hot and Dry Climate

M. Bady, M. Ouzzane, Mohamed S. Shahin
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Abstract

To reduce the dependence on electrical energy for heating and cooling systems in hot and arid climate areas, shallow geothermal energy as a local energy source represents a promising alternative. In this regard, it is essential to know and understand the ground temperature profile to design shallow geothermal applications and estimate the energy contribution. Many parameters influence the ground temperature profile, such as soil properties, surface cover, soil moisture, degree of compaction...etc. The variation of these parameters affects the damping depth of the annual fluctuation of ground temperature and the thermal diffusivity. Accordingly, the present study investigates experimentally the ground temperature profile subjected to the variation of two selected parameters on the ground response time and the damping depth. These parameters are solar radiation and ground humidity. The ground temperatures were measured and then used to present the temperature distribution profiles. The measurement site is in Madinah (lat. of 24.5° N and long. of 39.5° E), KSA, characterized by a hot and arid climate, where the temperature in summer exceeds 48.0 °C. A well of 14 m depth and 7.5 cm diameter is drilled in the site, and 15 thermocouples (T-type) are used to measure the ground temperature at different depths. Results show that the ground temperature as a geothermal energy source is sensitive to solar radiation and soil humidity, especially near the ground surface. These parameters can influence the design and operation of EAHE.
干热气候下浅层地热能应用地温分布的实验研究
为了减少炎热和干旱气候地区供暖和制冷系统对电能的依赖,浅层地热能作为当地能源是一种很有前途的替代能源。在这方面,了解地温分布对设计浅层地热应用和估计能量贡献至关重要。许多参数影响地温剖面,如土壤性质、地表覆盖、土壤湿度、压实度等。这些参数的变化影响地温年波动的衰减深度和热扩散系数。因此,本研究对两个选定参数对地面响应时间和阻尼深度变化的地温剖面进行了实验研究。这些参数是太阳辐射和地面湿度。测量了地面温度,然后用它来表示温度分布曲线。测量地点在麦地那(后期)。24.5°N和长。39.5°E),气候炎热干旱,夏季气温超过48.0°C。现场钻一口14 m深、7.5 cm直径的井,使用15个热电偶(t型)测量不同深度的地温。结果表明,地温作为地热能来源,对太阳辐射和土壤湿度敏感,尤其是近地表地温。这些参数会影响EAHE的设计和运行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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