THEORETICAL ANALYSIS ON EFFICIENT MICROWAVE WARMING OF HUMAN BLOOD

S. Kumari, Sujoy Kumar Samanta, B. Saxena
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Abstract

Economical and efficient warming of pre-transfusion human blood has been a subject of extensive investigation. The objective of this study is to identify and analyze the effect of enhanced microwave warming of bank blood. The sample here has been assumed to be a 2D cylinder interacting with microwave irradiation. The mathematical interpretation for the study is performed by solving the equation of electromagnetic wave propagation along with the equation of energy balance and pertinent boundary conditions. The samples after being subjected to both lateral and radial irradiations of same intensity are investigated for the power absorption in the sample with respect to the sample size. The preliminary observations obtained are further analyzed and extended for spatial distribution scrutiny. The collaborative analysis of the spatial distributions of temperature and power in the human blood along with high heating rate and low thermal non-uniformity determine the optimal heating strategy. The observations at different sample sizes recommend radial irradiation as the optimal heating strategy for samples corresponding to OP: 1 and 3, and lateral irradiation for samples corresponding to OP: 2, respectively. Considering all the aspects, the present work recommends an efficient way for enhanced microwave assisted heating of body fluid samples (2D cylindrical geometry) with known or measurable dielectric properties.
微波有效加热人体血液的理论分析
经济有效地对输血前的人血进行加热一直是广泛研究的课题。本研究的目的是识别和分析微波强化加热血库的效果。这里的样品被假设为与微波辐照相互作用的二维圆柱体。通过求解电磁波传播方程以及能量平衡方程和相应的边界条件,对研究结果进行了数学解释。研究了受相同强度的横向和径向辐照后样品的功率吸收与样本量的关系。对获得的初步观测结果进行进一步分析和扩展,以进行空间分布审查。通过对人体血液中温度和能量的空间分布以及高加热速率和低热不均匀性的协同分析,确定了最佳加热策略。不同样本量的观测结果表明,对于OP: 1和3对应的样品,径向辐照是最优加热策略,对于OP: 2对应的样品,侧向辐照分别是最优加热策略。考虑到所有方面,本工作推荐了一种有效的方法来增强微波辅助加热具有已知或可测量介电特性的体液样品(二维圆柱形几何)。
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