Geophysical survey reveals radioactive heat production varies from 0.19 to 6.92 μW/m3 across diverse rock units, indicating uranium concentration is the primary driver of thermal generation.
The surface radioactive heat production map of Gebel El Bakriyah – Wadi El Batur area isconstructed based on the airborne spectral gamma-ray data. This area comprises a wide diversity of igneous,metamorphic and sedimentary rocks ranging in age from Precambrian to the Quaternary. It possesses gamma radiationranging between 1.6 and 33.5 Ur as a total count, 0.1 to 3.7 % for K, 0.1 to 30.1 ppm for eU and 0.8 to 28.9 ppm foreTh. The radioactive heat production values for the rock units in the study area range from 0.19 μW/m3 to 6.92 μW/m3,the highest radioactive heat production values (2 μW/m3 to 6.92 μW/m3) are related to some parts of the youngergranites of Gebel El Bakriyah , Dakhla Formation (shale) and Duwi Formation (phosphatic beds). However, the lowestvalues of the radioactive heat production (0.19 to 1 μW/m3) are corresponding to metasediments, metavolcanics,serpentinite, metagabbro, Taref Formation and some parts of Quseir and Dakhla formations. A good correlation isfound between the heat production map and equivalent uranium map, which reflects that the uranium content could bethe main effective factor for the surface distribution of heat production in the study area
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Reda Abdu Yousef El‐Qassas (2018) studied this question.
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