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Interpolation using Cubic Splines as a Novel Modeling Methodology for Exact Adsorption Equilibrium of Silica-gel/water and MIL-101(Cr)/water Working Pairs for Numerical Performance Prediction of Solar-Powered Integrated Refrigeration Systems

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Mendeley Data2026-04-18 收录
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This data set contains all the spline coefficients obtained via cubic spline interpolation (in the same order as shared) including: 1. Functional dependence of specific heat capacity of MIL-101(Cr) on adsorption/desorption bed temperature 2. Functional dependence of heat of adsorption of MIL-101(Cr) on adsorption/desorption bed temperature 3. Functional dependence of specific heat capacity of silica-gel on adsorption/desorption bed uptake 4. Functional dependence of heat of adsorption of silica-gel on adsorption/desorption bed uptake 5. Adsorption Isotherm (uptake v.s. relative pressure) of silica-gel 6. Adsorption Isotherm (uptake v.s. relative pressure) of MIL-101(Cr) 7.Desorption Isotherm (uptake v.s. relative pressure) of MIL-101(Cr) 8. Functional dependence of diffusion coefficient of water molecules in LiBr/water solution upon concentration and temperature 9. Functional dependence of specific heat capacity of Aluminum heat exchanger on temperature 10. Functional dependence of specific heat capacity of Copper heat exchanger on temperature 11. Functional dependence of specific heat capacity of water on temperature 12. Functional dependence of specific heat capacity of saturated water vapor on temperature 13. Functional dependence of specific heat capacity of latent heat of vaporization of water on temperature Finally, the entire zipped code for simulation of stand-alone silica-gel/water adsorption chiller has also been shared here with the name: stand_alonesilica_gel_ads_chiller.zip. It runs by first unzipping this file in a folder, opening this folder in MATLAB command window, and typing "adsorption_chiller_test" at the command prompt. After this code runs successfully, it will save a number of .dat files in the folder out of which only two are important namely "Perfor.dat" and "DATA.dat". Perfor.dat consists of the same number of rows as the total number of cycles, its first column represents the COP values for each cycle, while the second and the third one represents the solar COP and SCP values for each cycle, respectively. The "DATA.dat" file has 21 columns and more than 9000,000 rows each of which represents a time-step in simulation. The columns can be represented as follows: 1. adsorption bed temp, 2. desorption bed temp, 3. evaporator temperature, 4. adsorption bed pressure, 5. desorption bed pressure, 6. adsorption bed uptake, 7. desorption bed uptake, 8. hot water storage tank temp, 9. Mass of liquid water in evaporator, 10. refrigeration power, 11. heating power, 12. driving temp, 13. incremental COP values, 14. relative pressure in adsorption bed, 15. relative pressure in desorption bed, 16. chilled water inlet temp, 17. cooling water inlet temp, 18. heating water inlet temp, 19. heating water outlet temp, 20. chilled water outlet temp, 21. cooling water outlet temp

本数据集包含通过三次样条插值(与共享顺序一致)得到的全部样条系数,具体如下: 1. MIL-101(Cr)的比热容随吸附/脱附床温度的函数关系 2. MIL-101(Cr)的吸附热随吸附/脱附床温度的函数关系 3. 硅胶的比热容随吸附/脱附床吸附量的函数关系 4. 硅胶的吸附热随吸附/脱附床吸附量的函数关系 5. 硅胶的吸附等温线(吸附量vs相对压力) 6. MIL-101(Cr)的吸附等温线(吸附量vs相对压力) 7. MIL-101(Cr)的脱附等温线(吸附量vs相对压力) 8. 溴化锂/水溶液中水分子扩散系数随浓度与温度的函数关系 9. 铝制换热器的比热容随温度的函数关系 10. 铜制换热器的比热容随温度的函数关系 11. 水的比热容随温度的函数关系 12. 饱和水蒸气的比热容随温度的函数关系 13. 水的汽化潜热随温度的函数关系 此外,本数据集还附带了独立式硅胶/水吸附式制冷机的完整仿真压缩代码,文件名为`stand_alonesilica_gel_ads_chiller.zip`。其运行流程为:首先将该压缩包解压至指定文件夹,在MATLAB命令窗口中打开该文件夹,随后在命令提示符中输入`adsorption_chiller_test`。代码成功运行后,将在该文件夹中生成若干.dat格式文件,其中仅两个文件至关重要,分别为`Perfor.dat`与`DATA.dat`。 `Perfor.dat`的行数与总循环次数一致,其第一列为各循环的COP(性能系数,Coefficient of Performance)值,第二列与第三列依次为各循环的太阳能COP与SCP(比冷却功率,Specific Cooling Power)值。`DATA.dat`文件包含21列数据,行数超过900万行,每一行对应仿真中的一个时间步长。各列含义如下:1. 吸附床温度;2. 脱附床温度;3. 蒸发器温度;4. 吸附床压力;5. 脱附床压力;6. 吸附床吸附量;7. 脱附床吸附量;8. 热水储水箱温度;9. 蒸发器内液态水质量;10. 制冷功率;11. 加热功率;12. 驱动温度;13. 增量COP值;14. 吸附床内相对压力;15. 脱附床内相对压力;16. 冷冻水入口温度;17. 冷却水入口温度;18. 热水入口温度;19. 热水出口温度;20. 冷冻水出口温度;21. 冷却水出口温度

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2025-01-22
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