暗模式蒸汽波风格主题:Noturnal在VSCode扩展中心发布

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资源摘要信息:"该资源是一个基于暗模式和蒸汽波风格创建的Visual Studio Code主题。蒸汽波风格源于2010年代初期,其特点是强烈的80年代和90年代怀旧情结,融合了当时流行文化的多种元素。主题安装依赖于VSCode IDE,并提供了三种安装方式:直接通过VSCode安装、通过命令面板安装和使用Git克隆仓库安装。" 蒸汽波风格是一种艺术风格,它起源于2010年代初期,是对80年代和90年代复古美学的怀旧和复兴。这种风格往往通过合成器音乐、数字艺术、以及对那个时代流行文化元素的引用,来营造出一种未来复古感。蒸汽波风格中的图像和视频通常带有复古的噪点效果、彩色的光晕效果和模拟电视信号的条纹,这种风格在设计和艺术领域广泛流行,并逐渐渗透到技术领域,如计算机桌面主题和应用程序界面设计。 暗模式(Dark Mode)是界面设计中的一种样式,特点是使用深色调的背景和浅色调的文字或图标。暗模式不仅在视觉上具有现代感和时尚感,还能减少用户在使用设备时对眼睛的压力,尤其是在光线较暗的环境中。在暗模式下,屏幕产生的蓝光也会减少,有助于保护用户的睡眠质量。因此,暗模式成为了许多软件和操作系统的可选主题之一。 Visual Studio Code(VSCode)是微软推出的一款轻量级但功能强大的源代码编辑器,它支持多种编程语言的语法高亮、代码补全、Git控制和调试等功能。VSCode以其丰富的插件生态而闻名,用户可以根据自己的需求安装不同的扩展(Extension),从而增加VSCode的适用性和个性化。 本资源中提到的"noturnal"主题,就是一款专为VSCode设计的暗模式主题,它采用了蒸汽波风格,适合那些喜欢这种复古风格的开发者。资源中还提供了一些关于如何安装该主题的详细步骤,包括通过VSCode的内置命令面板进行安装,以及通过Git仓库克隆和安装。这些方法提供了灵活的选择,以适应不同的用户习惯和环境设置。 对于VSCode的扩展安装,通常有以下几种途径: 1. 直接在VSCode内置的扩展市场中搜索并安装。 2. 使用命令面板通过输入特定命令来安装扩展。 3. 手动下载扩展的压缩包文件(如本资源中的noturnal-main),然后在VSCode中加载。 4. 使用Git命令从远程仓库克隆扩展并手动安装。 在选择使用哪种安装方式时,用户可以根据自己的网络环境、是否熟悉命令行操作以及是否需要手动管理扩展的版本来决定。例如,直接通过VSCode内置的扩展市场安装是最直接和简单的方式;而使用Git则更适合那些需要频繁更新或有能力进行源代码级别的定制的用户。 综上所述,该资源为开发者提供了一种结合暗模式与蒸汽波风格的个性化编程界面选择,同时给出了详细的安装指导,使得从安装到应用整个过程变得方便快捷。

用中文总结以下内容: A number of experimental and numerical investigations have been conducted to study the MBPP stack and wavy flow field characteristics with various designs [10,11]. T. Chu et al. conducted the durability test of a 10-kW MBPP fuel cell stack containing 30 cells under dynamic driving cycles and analyzed the performance degradation mechanism [12]. X. Li et al. studied the deformation behavior of the wavy flow channels with thin metallic sheet of 316 stainless steel from both experimental and simulation aspects [13]. J. Owejan et al. designed a PEMFC stack with anode straight flow channels and cathode wavy flow channels and studied the in situ water distributions with neutron radiograph [14]. T. Tsukamoto et al. simulated a full-scale MBPP fuel cell stack of 300 cm2 active area at high current densities and used the 3D model to analyze the in-plane and through-plane parameter distributions [15]. G. Zhang et al. developed a two-fluid 3D model of PEMFC to study the multi-phase and convection effects of wave-like flow channels which are symmetric between anode and cathode sides [16]. S. Saco et al. studied the scaled up PEMFC numerically and compared straight parallel, serpentine zig-zag and straight zig-zag flow channels cell with zig-zag flow field with a transient 3D numerical model to analyze the subfreezing temperature cold start operations [18]. P. Dong et al. introduced discontinuous S-shaped and crescent ribs into flow channels based on the concept of wavy flow field for optimized design and improved energy performance [19]. I. Anyanwu et al. investigated the two-phase flow in sinusoidal channel of different geometric configurations for PEMFC and analyzed the effects of key dimensions on the droplet removal in the flow channel [20]. Y. Peng et al. simulated 5-cell stacks with commercialized flow field designs, including Ballard-like straight flow field, Honda-like wavy flow field and Toyota-like 3D mesh flow field, to investigate their thermal management performance [21]. To note, the terms such as sinusoidal, zig-zag, wave-like and Sshaped flow channels in the aforementioned literatures are similar to the so called wavy flow channels in this paper with identical channel height for the entire flow field. The through-plane constructed wavy flow channels with periodically varied channel heights are beyond the scope of this paper [22,23].

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