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PERFORMANCE EVALUATION OF HOT AIR THERMOELECTRIC GENERATOR USING BIOMASS ENERGY SOURCE 生物质热风热电发电机的性能评价
Pub Date : 2023-10-31 DOI: 10.30572/2018/kje/140406
Francis Onoroh, Mercy Ogbonnaya, Larry Orobome Agberegha
Thermoelectric generators are solid-state devices that convert heat into electricity using the Seebeck effect, when there is a temperature difference across a thermoelectric material. This research designed an experimentally tested a thermoelectric hot air generator using sixteen SP1848-27145 modules in two parallel strings. The system consists of a biomass combustion chamber, hot air exhauster, hot and cold side heat exchangers. Voltage, current and temperatures in the combustion chamber, hot air heat exhauster, hot side heat exchanger and cold side heat sink were measured. The hot air exhauster, hot side heat sink and cold side maximum temperatures are 178.3°C, 69.2°C and 44.5°C respectively yielding an open circuit voltage of 64 V and current of 1.99 A in the course of the experiment. The thermal performance of the designed hot air exhauster, hot side heat exchanger and cold side heat were simulated using ANSYS Fluent, for pictorial representation of their temperature contours.
热电发电机是一种固态装置,当热电材料之间存在温差时,利用塞贝克效应将热量转化为电能。本研究利用16个SP1848-27145模块并联设计了热电热风发生器。该系统由生物质燃烧室、热风排风器、冷热侧换热器组成。测量了燃烧室、热风排热器、热侧换热器和冷侧散热器内的电压、电流和温度。实验过程中,热排风器、热侧散热器和冷侧最高温度分别为178.3℃、69.2℃和44.5℃,开路电压为64 V,电流为1.99 A。利用ANSYS Fluent软件对所设计的热风排风器、热侧换热器和冷侧换热器的热性能进行了仿真,并以图形化的形式表示了它们的温度分布。
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引用次数: 0
HUMAN-COMPUTER INTERACTION: ENHANCING USER EXPERIENCE IN INTERACTIVE SYSTEMS 人机交互:增强交互系统的用户体验
Pub Date : 2023-10-31 DOI: 10.30572/2018/kje/140403
Harem Ali Kheder
In this research, we investigate how human-computer interaction (HCI) can be used to improve the user experience (UX) of interactive systems. Studies in cognitive psychology, information processing, and human factors are examined as they relate to the development of HCI. It highlights how HCI has shifted its focus from functionality to user-friendliness, teaching ability, efficiency, enjoyment, and emotion. To better understand the current state of HCI and UX research, practice, and theory, a systematic literature study is performed. Focusing on users' goals wants, and characteristics at every stage of the design process is central to user-centered design (UCD) ideas and approaches, which are discussed at length in this article. We investigate usability testing as a crucial technique for bettering HCI, focusing on its advantages in pinpointing usability problems, boosting system efficacy, and boosting user pleasure. Methods for creating tests, finding participants, collecting data, and analyzing results are discussed. The importance of prototype methods in HCI and user-centric design is also emphasized in the study. This article delves into the practice of creating prototypes to collect user feedback, iterate designs, and perfect interactive systems. Techniques covered include paper prototyping, interactive wireframes, and high-fidelity prototypes. We propose interaction design frameworks like the User-Centered Design Process (UCDP) and the Double Diamond model to help designers prioritize users when developing interactive systems. The study also delves into how technologies like augmented reality, virtual reality, natural language processing, machine learning, and gesture-based interfaces have revolutionized HCI in recent years. The paper defends user-centric design's place in HCI, pointing out how UX affects user happiness, participation, and output. Researchers and practitioners in HCI and software engineering can greatly benefit from this paper's findings.
在本研究中,我们探讨了如何使用人机交互(HCI)来改善交互系统的用户体验(UX)。在认知心理学,信息处理和人为因素的研究被检查,因为他们涉及到HCI的发展。它强调了HCI如何将重点从功能转移到用户友好、教学能力、效率、享受和情感上。为了更好地了解人机交互和用户体验研究、实践和理论的现状,进行了系统的文献研究。在设计过程的每个阶段关注用户的目标、需求和特征是以用户为中心的设计(UCD)思想和方法的核心,本文将详细讨论这一点。我们将可用性测试作为改善HCI的关键技术进行研究,重点关注其在确定可用性问题、提高系统效率和提高用户乐趣方面的优势。讨论了创建测试、查找参与者、收集数据和分析结果的方法。研究还强调了原型方法在人机交互和以用户为中心的设计中的重要性。本文将深入探讨如何创建原型来收集用户反馈、迭代设计和完善交互系统。所涉及的技术包括纸原型、交互式线框和高保真原型。我们提出了交互设计框架,如以用户为中心的设计过程(UCDP)和双钻石模型,以帮助设计师在开发交互系统时优先考虑用户。该研究还深入探讨了近年来增强现实、虚拟现实、自然语言处理、机器学习和基于手势的界面等技术如何彻底改变了HCI。这篇论文为以用户为中心的设计在人机交互中的地位进行了辩护,指出用户体验如何影响用户的幸福感、参与度和产出。HCI和软件工程的研究人员和实践者可以从本文的发现中受益匪浅。
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引用次数: 0
EVALUATION OF EFFECT OF PARAMETER ON SINGLE POINT INCREMENTAL FORMING OF TITANIUM 参数对钛单点增量成形影响的评价
Pub Date : 2023-10-31 DOI: 10.30572/2018/kje/140404
Doaa monther Sadiq, Iman J. Abed, Shakir Gatea
Single Point Incremental Forming (SPIF) has emerged as a promising technique for shaping complex geometries in various materials. This study investigates the influence of process parameters, specifically step size and tool diameter, on the SPIF of titanium sheets. The experiment comprises three different step sizes (0.2, 0.4, and 0.6 mm) and three tool diameters (6, 10, and 14 mm), applied to titanium sheets. The research focuses on evaluating the impact of these parameters on three crucial aspects of SPIF: thickness reduction, fracture depth, and forming angle in the fracture zone. Through a series of experiments, the relationship between step size, tool diameter, and these performance indicators is thoroughly examined. Results indicate that smaller step sizes lead to higher thickness reductions and more precise forming angles in the fracture region and smaller tool diameters also increased fracture depths. Understanding the interplay between these parameters is vital for optimizing SPIF processes in titanium sheet forming applications, offering insights for enhanced production efficiency and quality in industries relying on advanced forming techniques. The CNC forming process took about 10 hours.
单点增量成形(SPIF)已成为一种有前途的技术,用于各种材料的复杂几何形状的成形。研究了工艺参数,特别是步长和刀具直径对钛板SPIF的影响。实验包括三种不同的步长(0.2、0.4和0.6 mm)和三种刀具直径(6、10和14 mm),应用于钛板。研究的重点是评估这些参数对SPIF的三个关键方面的影响:厚度减小、裂缝深度和裂缝带形成角度。通过一系列实验,深入研究了步长、刀具直径与这些性能指标之间的关系。结果表明,步长越小,断口处的厚度减小幅度越大,成形角度越精确,刀具直径越小,断口深度也越大。了解这些参数之间的相互作用对于优化钛板成形应用中的SPIF工艺至关重要,为依赖先进成形技术的行业提高生产效率和质量提供了见解。数控成形过程耗时约10个小时。
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引用次数: 0
STUDY THE EFFECT OF EXTERNAL CRACK ON THE MECHANICAL PROPERTIES OF COMPOSITE MATERIALS 研究了外裂纹对复合材料力学性能的影响
Pub Date : 2023-10-31 DOI: 10.30572/2018/kje/140401
Mundher A. Dookhi, Ahmed A. Tahir
Increasing the strength of the matrix material rather than increasing stiffness is frequently the primary objective when designing composite materials. This is typically the case when the matrix is made of brittle, low-strength material. the resilience of this matrix substance Usually, it is determined by the initial flaws in the raw material. Depending on the microstructure of the composite material, these flaws or fissures may be large or minor. The orientations of the foil fibers, which can be customized to improve the performance of the laminate, have a significant impact on the properties of fiber reinforced polymer (FRP) laminates. This study's goal is to look at how matrix cracking affects the mechanical characteristics of FRP chips. The presence and absence of exterior cracks are examined in unidirectional glass fiber reinforced polymer strips. Samples were manually cast using plastic molds constructed in accordance with ASTM standards. It were able to comprehend the impact of external cracking on composite materials through the mechanical tests that were conducted since it causes the material to weaken. Consequently, it is seen as a location where tensions are concentrated.
在设计复合材料时,增加基体材料的强度而不是增加刚度往往是主要目标。当基体由脆性、低强度材料制成时,这是典型的情况。这种基体物质的弹性通常是由原材料的初始缺陷决定的。根据复合材料的微观结构,这些缺陷或裂缝可大可小。箔纤维的取向可以定制以提高层压板的性能,对纤维增强聚合物(FRP)层压板的性能有重大影响。本研究的目的是研究基体开裂如何影响玻璃钢切屑的力学特性。对单向玻璃纤维增强聚合物条的外裂纹的存在和不存在进行了检测。样品使用符合ASTM标准的塑料模具手工铸造。它能够理解外部裂纹对复合材料的影响,通过力学测试,因为它会导致材料变弱。因此,它被视为紧张局势集中的地方。
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引用次数: 0
INVESTIGATION OF SURFACE ROUGHNESS IN MODERN FINISHING PROCESS USING PERMANENT MAGNET 现代永磁精加工中表面粗糙度的研究
Pub Date : 2023-10-31 DOI: 10.30572/2018/kje/140402
Baqer A. Ahmed, Mohammed S. Jabbar
This work introduces an investigation of the surface roughness (Ra) during flat plate machining utilizing magnetic abrasive finishing process (MAF). In this study three parameters (Machining time, Mesh size, and Gap) were studied. The MAF tool is made from permanent magnet and the abrasive powder is consisting of 40% of SiC and 60% Fe powder with three Mesh size (100, 250, and 400 µm). The Taguchi L9 array was used in designing the experiments. The results show that the increasing machining time caused a decrease in Ra. The increase in mesh size and the gap will increase the surface roughness. The dominant factor that affect the surface roughness was the machining time due to enough time to machine the target surface.
本文介绍了利用磁磨料精加工技术(MAF)加工平板时表面粗糙度(Ra)的研究。在这项研究中,三个参数(加工时间,网格尺寸和间隙)进行了研究。MAF工具由永磁体制成,磨料粉末由40%的SiC和60%的Fe粉末组成,具有三种Mesh尺寸(100、250和400µm)。实验设计采用田口L9阵列。结果表明,随着加工时间的延长,Ra含量降低。网目尺寸和间隙的增加会增加表面粗糙度。影响表面粗糙度的主要因素是加工时间,因为加工目标表面需要足够的时间。
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引用次数: 0
A POROUS MEDIA APPROACH FOR NUMERICAL OPTIMISATION OF THERMAL WHEEL 热轮数值优化的多孔介质方法
Pub Date : 2023-10-31 DOI: 10.30572/2018/kje/140405
Ahmed Alhusseny, Nabeel Al-Zurfi, Qahtan Al-Aabidy, Adel Nasser, Hayder Al-Sarraf
The experimental investigations of rotating heat exchangers are usually too costly and provide limited understanding for the phenomena of heat and fluid flow within them; hence, a less expensive and more comprehensive method is required to investigate what can affect their overall performance. In the current study, a porous media concept is presented as an alternative way to numerically analyse the fluid flow and heat transport through a rotary thermal regenerator. An aluminum core formed of multi-packed square passages is simulated as a porous medium of an orthotropic porosity in order to allow the counter-flowing streams to flow in a way similar to that inside the regenerator core. The geometric properties of the core were transformed into the conventional porous media parameters such as the permeability and inertial coefficient based on empirical equations; so, the core has been dealt with as a porous medium of known features. Fluid and solid phases are assumed to be in a local thermal non-equilibrium state with each other. A commercial CFD code "STAR CCM+" was used to solve the current problem numerically, where heat is allowed to be exchanged between the two phases and tracked by creating a heat exchanger interface in the core region. The results are presented by means of overall thermal effectiveness, pressure drop, and coefficient of performance COP. Using porous media approach has been found to be sufficient to simulate the current problem, where the currently computed data were found to deviate by up to 2.7% only from the corresponding analytical and experimental data. The data obtained reveal an obvious impact of the core geometrical parameters on both the heat restored and pressure loss; and hence, the overall efficiency of the regenerator system.
旋转换热器的实验研究通常过于昂贵,对换热器内的热和流体流动现象的理解有限;因此,需要一种更便宜、更全面的方法来研究影响它们整体性能的因素。在目前的研究中,多孔介质概念被提出作为一种替代方法来数值分析流体流动和热传递通过旋转蓄热器。由多填料方形通道组成的铝芯被模拟为具有正交各向异性孔隙度的多孔介质,以允许逆流流以类似于再生器芯内部的方式流动。根据经验方程将岩心的几何性质转化为渗透率、惯性系数等常规多孔介质参数;因此,岩心被视为具有已知特征的多孔介质。假定流体和固相彼此处于局部热非平衡状态。商业CFD代码“STAR CCM+”用于数值解决当前的问题,其中允许热量在两相之间交换,并通过在核心区域创建热交换器界面来跟踪。通过综合热效率、压降和性能COP系数给出了计算结果。使用多孔介质方法已被发现足以模拟当前的问题,其中目前计算的数据与相应的分析和实验数据相差高达2.7%。结果表明,堆芯几何参数对热恢复和压力损失有明显的影响;因此,蓄热系统的整体效率。
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引用次数: 0
期刊
Magallat Alkufat Alhandasiyyat
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