Department of Surgery, Division of Acute Care Surgery, UNLV School of Medicine, Las Vegas, Nevada, USA.
UNLV School of Mechanical Engineering, Las Vegas, Nevada, USA.
J Burn Care Res. 2023 Mar 2;44(2):438-445. doi: 10.1093/jbcr/irac136.
Plentiful sunlight and high temperatures in desert climates cause burn injuries from contact with sun-exposed surfaces. The peak temperature, times, and surfaces of greatest risk are not well described. This work recorded temperature measurements of six materials in a desert climate. Surface temperatures of asphalt, brick, concrete, sand, porous rock, and galvanized metal were measured throughout the summer, along with ambient temperature, and sunlight intensity. Samples were placed in both shade and direct sunlight for evaluation of sunlight effect. Seventy-five thousand individual measurements were obtained from March to August 2020. Maximum recorded temperatures for sunlight-exposed porous rock were 170°F, asphalt 166°F, brick 152°F, concrete 144°F, metal 144°F, and sand 143°F, measured on August 6, 2020 at 2:10 pm, when ambient temperature was 120°F and solar irradiation 940 W/m2. Sunlight-exposed materials ranged 36 to 56°F higher than shaded materials measured at the same time. The highest daily temperatures were achieved between 2:00 and 4:00 pm due to maximum solar irradiance. Contour plots of surface temperature as a function of both solar irradiation and time of day were created for all materials tested. A computational fluid dynamics model was created to validate the data and serve as a predictive model based upon temperature and sunlight inputs. This information is useful to inform the public of the risks of contact burn due to sunlight-exposed surfaces in a desert climate.
沙漠气候充足的阳光和高温会导致与暴露在阳光下的表面接触而烧伤。高峰温度、时间和最大风险表面尚未得到很好的描述。本工作记录了沙漠气候下六种材料的温度测量值。整个夏季都测量了沥青、砖、混凝土、沙子、多孔岩石和镀锌金属的表面温度,以及环境温度和阳光强度。为了评估阳光的影响,将样品放置在阴凉处和阳光直射处进行评估。从 2020 年 3 月到 8 月,共获得了 75000 个单独的测量值。2020 年 8 月 6 日下午 2:10,记录到阳光直射多孔岩石的最高温度为 170°F,沥青为 166°F,砖为 152°F,混凝土为 144°F,金属为 144°F,沙子为 143°F,当时环境温度为 120°F,太阳辐射为 940 W/m2。阳光直射材料的温度比同一时间测量的阴凉材料高 36 到 56°F。由于最大太阳辐射,最高日温度在下午 2:00 到 4:00 之间达到。为所有测试材料创建了表面温度作为太阳辐照度和一天中时间的函数的等高线图。创建了计算流体动力学模型来验证数据,并作为基于温度和阳光输入的预测模型。这些信息有助于告知公众在沙漠气候下由于阳光直射表面而接触烧伤的风险。