Electrohydrodynamics
收藏资源简介:
该数据集是一个包含6000个高保真训练实例的综合集合,专门用于微调Mistral-Large-Instruct-2411基础模型。数据集捕捉了电动力学在霍尔效应推进器中的理论、计算和实验方面。其关键特点包括多模态元素(如LaTeX方程、代码片段、文本解释和元数据)、涵盖的领域(理论、计算、实验)、参数范围(如电场和等离子体密度)以及详细的元数据(如示例、注释、预期输出格式、标签和评估标准)。数据集旨在增强大型语言模型在等离子体物理及相关领域的推理、推导和问题解决能力,并支持科学研究,特别是先进推进系统的开发。
This dataset is a comprehensive collection of 6000 high-fidelity training instances, specifically tailored for fine-tuning the Mistral-Large-Instruct-2411 base model. It covers the theoretical, computational and experimental aspects of electrodynamics in Hall-effect thrusters. Its key features include multimodal elements (such as LaTeX equations, code snippets, textual explanations and metadata), covered research domains (theoretical, computational, experimental), parameter ranges (e.g., electric field and plasma density), and detailed metadata including examples, annotations, expected output formats, labels and evaluation criteria. This dataset aims to enhance the reasoning, deduction and problem-solving capabilities of large language models in plasma physics and related fields, and support scientific research, particularly the development of advanced propulsion systems.
Electrohydrodynamics in Hall Effect Thrusters Dataset
数据集概述
该数据集是一个包含6,000个高保真训练实例的综合集合,专门用于微调Mistral-Large-Instruct-2411基础模型。它涵盖了霍尔效应推进器中电动力学的理论、计算和实验方面。
关键特性:
- 多模态元素:包括LaTeX公式、代码片段、文本解释和元数据,适用于多种机器学习任务。
- 涵盖领域:
- 理论:控制方程、等离子体物理原理和标度定律。
- 计算:模拟方法(PIC、MHD)、数值技术和伪代码实现。
- 实验:测量技术、参数估计和诊断方法。
- 参数范围:
- 电场:0.1 - 10 kV/mm
- 等离子体密度:(10^{18} - 10^{21} , ext{m}^{-3})
- 电荷载流子迁移率:全面覆盖。
- 详细元数据:包括示例、注释、预期输出格式、标签、引用和评估标准。
数据集结构
列:
instruction:提供给模型的任务或查询,用于完成或解释。response:对指令的详细预期响应,格式化以支持多模态输出。domain:指定任务的上下文(例如,理论、计算、实验)。complexity:任务的难度级别(例如,初学者、中级、高级)。parameters:指定关键变量的JSON编码字典,如电场范围和等离子体密度。examples:示例输入和输出,说明指令-响应对的上下文。notes:提供有关任务的额外信息的上下文注释或评论。expected_output_format:指定所需的输出格式(例如,LaTeX、代码、文本)。tags:数据集条目的分类标签(例如,“等离子体物理”,“霍尔推进器”)。
示例行:
| instruction | response | domain | complexity | parameters | examples | notes | expected_output_format | tags |
|---|---|---|---|---|---|---|---|---|
| "Instruction 1: Discuss how to set up a 2D PIC simulation for electron density distribution." | "In this theoretical context, we consider the underlying physics governing electron motion in the magnetic field. | |||||||
| A key equation often used is the electron cyclotron frequency: |
[ \omega_{ce} = \frac{qB}{m_e} ]
Typical parameter ranges might include electric fields of 0.1 to 1 kV/mm and plasma densities of 1e18 to 1e19 m^-3. By examining how these parameters influence cross-field electron mobility, we can better understand and optimize Hall thruster performance." | theoretical | beginner | {"electric_field_range": "0.1 to 1 kV/mm", "plasma_density_range": "1e18 to 1e19 m^-3"} | "Example: Provide a detailed derivation of the governing equations for plasma dynamics." | "This instruction pertains to the theoretical domain, focusing on advanced applications in Hall thruster research." | "LaTeX equations and textual explanation" | ["theoretical", "beginner", "Hall thruster", "electrohydrodynamics"] |
预期用途
该数据集专门设计用于微调大型语言模型(如Mistral-Large-Instruct-2411),以:
- 增强其在等离子体物理及相关领域中的推理、推导和问题解决能力。
- 实现包括文本、数学和计算元素的多模态输出。
- 支持科学研究中AI模型的开发,特别是在先进推进系统领域。
许可证与引用
bibtex @dataset{electrohydrodynamics_dataset_2024, title={{Electrohydrodynamics in Hall Effect Thrusters Dataset}}, author={A Taylor}, howpublished={url{https://hf.co/taylor658}}, year={2024}, note={Synthetic dataset for fine-tuning foundation models in plasma physics and advanced propulsion systems.} }




