INTERNATIONAL JOURNAL OF REFRIGERATION国际制冷杂志

INTERNATIONAL JOURNAL OF REFRIGERATION(英文缩写 INT J REFRIG),ISSN 0140-7007,eISSN 1879-2081,中文译名:国际制冷杂志 是一本学术期刊。本页汇总该期刊的最新影响因子、分区信息以及最新收录于 PubMed 的文献,帮助您快速了解期刊全貌。

2026 年数据 · 影响因子
4.000
JCR 分区
Q1
CAS 分区
B2
近一年发文量
0
本站 PubMed 收录统计

发文量统计区间:2025-09-27 至 2026-09-27,按本站收录文献的发表日期统计。

ISSN: 0140-7007 · eISSN: 1879-2081 · 缩写: INT J REFRIG ·中文: 国际制冷杂志

期刊介绍

选择期刊介绍栏目

期刊简介

《International Journal of Refrigeration》是制冷与低温工程领域的国际性学术期刊,聚焦制冷循环、热泵、空调系统及相关工质的研究。内容涵盖基础热力学分析、部件与系统设计、能效优化及新型环保制冷剂应用,读者群主要为高校研究人员、制冷空调工程师及能源技术开发者。

研究方向

主要方向包括蒸气压缩与吸收式制冷、热泵、低温系统、相变传热与流动、制冷剂替代与润滑、系统建模与仿真、能效与可持续性评估。论文类型以原创研究、综述、短篇通讯及技术札记为主,兼顾理论与实验研究。

期刊特色

研究取向偏重工程应用与热力学机理结合,强调实验验证或数值模拟的可靠性。论文通常要求清晰的性能指标与对比分析,适合制冷空调、能源动力及低温工程领域的研究生、教师和研发人员阅读参考。

投稿难度

投稿难度中等偏上,对创新性和工程价值有明确要求。建议在实验数据完整性、模型验证及与现有文献对比方面充分准备,并注意英文表达与图表规范。不宜仅凭分区判断录用难易,需结合具体方向与审稿意见反复修改。

历年影响因子趋势

JCR 数据年份影响因子JCR 分区
20214.140Q1
20223.900Q2
20233.500Q1
20243.800Q1
20254.000Q1

INTERNATIONAL JOURNAL OF REFRIGERATION 最新收录文献

  1. JCR分区: Q1 CAS分区: B2 影响因子: 4

    1. Fault Detection for Vaccine Refrigeration via Convolutional Neural Networks Trained on Simulated Datasets.

    作者:
    Bhaskar Abhiraman, Riley Fotis, Leo Eskin, Harvey Rubin
    日期:
    2023-05-01

    In low-and middle-income countries, the cold chain that supports vaccine storage and distribution is vulnerable due to insufficient infrastructure and interoperable data. To bolster these networks, we developed a convolutional neural network-based fault detection method for vaccine refrigerators using datasets synthetically generated by thermodynamic modelling. We demonstrate that these thermodynamic models can be calibrated to real cooling systems in order to identify system-specific faults under a diverse range of operating conditions. If implemented on a large scale, this portable, flexible approach has the potential to increase the fidelity and lower the cost of vaccine distribution in remote communities.

  2. JCR分区: Q1 CAS分区: B2 影响因子: 4

    2. Prediction of COVID-19 Infection in Dental Clinic by CFD and Wells-Riley Model, Identifying Safe Area and Proper Ventilation Velocity: Prédiction de l'infection au COVID-19 dans une clinique dentaire par CFD et modèle Wells-Riley, identification de la zone de sécurité et de la vitesse de ventilation appropriée.

    作者:
    Shahram Karami, Esmail Lakzian, Goodarz Ahmadi
    日期:
    2023-03-15

    The COVID-19 virus is recognized worldwide as a significant public health threat. A dental clinic is one of the most dangerous places in the COVID-19 epidemic, and disease transmission is rapid. Planning is essential to create the right conditions in the dental clinic. In this study, the cough of an infected person is examined in a 9 × 6 × 3 m area. Computational fluid dynamic (CFD) is applied to simulate the flow field and to determine the dispersion path. The innovation of this research is checking the risk of infection for each person in the designated dental clinic, choosing the suitable velocity for ventilation, and identifying safe areas. In the first step, the effects of different ventilation velocities on the dispersion of virus-infected droplets are investigated, and the most appropriate ventilation flow velocity has been identified. Then, the results of the presence or absence of a dental clinic separator shield on the spread of respiratory droplets have been identified. Finally, the risk of infection (by the Wells-Riley equation) is assessed, and safe areas are identified. The effect of RH on droplet evaporation in this dental clinic is assumed to be 50%. The N values in an area with a separator shield are less than 1%. When there is a separator shield, the infection risk of people in A3 and A7 (the other side of the separator shield) is reduced from 23% to 4%, and 21% to 2%, respectively.

  3. JCR分区: Q1 CAS分区: B2 影响因子: 4

    3. Finding the proper position of supply and return registers of air condition system in a conference hall in term of COVID-19 virus spread.

    作者:
    Ahmad Jahani Rahvard, Shahram Karami, Esmail Lakzian
    日期:
    2023-01-01

    The outbreak of the COVID-19 has affected all aspects of people's lives around the world. As air transmits the viruses, air-conditioning systems in buildings, surrounded environments, and public transport have a significant role in restricting the transmission of airborne pathogens. In this paper, a computational fluid dynamic (CFD) model is deployed to simulate the dispersion of the COVID-19 virus due to the coughing of a patient in a conference hall, and the effect of displacement of supply and return registers of the air conditioning system is investigated. A validated Eulerian-Lagrangian CFD model is used to simulate the airflow in the conference hall. The particles created by coughing are droplets of the patient's saliva that contain the virus. Three cases with different positions of supply and return registers have been compared. The simulation results show that case1 has the best performance; since after 80 s in case 1 that the inlet registers are in the longitudinal wall, the whole particles are removed from space. However, in other cases, some particles are still in space.

  4. JCR分区: Q1 CAS分区: B2 影响因子: 4

    4. COVID 19 vaccine distribution solution to the last mile challenge: Experimental and simulation studies of ultra-low temperature refrigeration system.

    作者:
    Jian Sun, Mingkan Zhang, Anthony Gehl, Brian Fricke, Kashif Nawaz, Kyle Gluesenkamp, Bo Shen, Jeff Munk, Joe Hagerman, Melissa Lapsa
    日期:
    2022-01-01

    Most COVID-19 vaccines require ambient temperature control for transportation and storage. Both Pfizer and Moderna vaccines are based on mRNA and lipid nanoparticles requiring low temperature storage. The Pfizer vaccine requires ultra-low temperature storage (between -80 °C and -60 °C), while the Moderna vaccine requires -30 °C storage. Pfizer has designed a reusable package for transportation and storage that can keep the vaccine at the target temperature for 10 days. However, the last stage of distribution is quite challenging, especially for rural or suburban areas, where local towns, pharmacy chains and hospitals may not have the infrastructure required to store the vaccine. Also, the need for a large amount of ultra-low temperature refrigeration equipment in a short time period creates tremendous pressure on the equipment suppliers. In addition, there is limited data available to address ancillary challenges of the distribution framework for both transportation and storage stages. As such, there is a need for a quick, effective, secure, and safe solution to mitigate the challenges faced by vaccine distribution logistics. The study proposes an effective, secure, and safe ultra-low temperature refrigeration solution to resolve the vaccine distribution last mile challenge. The approach is to utilize commercially available products, such as refrigeration container units, and retrofit them to meet the vaccine storage temperature requirement. Both experimental and simulation studies are conducted to evaluate the technical merits of this solution with the ability to control temperature at -30 °C or -70 °C as part of the last mile supply chain for vaccine candidates.

  5. JCR分区: Q1 CAS分区: B2 影响因子: 4
  6. JCR分区: Q1 CAS分区: B2 影响因子: 4

    6. The effects of the novel home freezing system on microstructure, color, antioxidant activity, and microbiological properties of strawberries.

    作者:
    Ahsen Rayman Ergün, Murat Yanat, Taner Baysal
    日期:
    2021-01-01

    In these days people are more interested in frozen foods, especially home freezing fruits and vegetables. In this study, the effects of a new developed quick freezer system for home-type refrigerator on the freezing rates and some quality properties of strawberries were investigated. The freezing cabinet (at -30 °C with 1.2 ms air) was designed and manufactured by Bosch und Siemens Hausgerate GmbH (Çerkezköy, Turkey) then the strawberrries were frozen in a novel quick freezer and compared with the samples frozen statically at classic home type refrigerator (at -18 °C without any air blown) via the freezing times at three different (bottom, middle and top) position. Microstructure, color, antioxidant content and microbiological quality during storage of 4 months at -25 °C compared. Strawberries reached -15 °C approximately 234 min shorter in the novel system. Freezing rates were determined as 0.32 cm h for the static freezer and 1.51 cm h for the quick freezer. Unlike the classic home-type refrigerator, quick freezing process took place in the novel home freezing system. SEM images showed that higher freezing rate in the novel system provides better protection in tissue structure and cell walls. The antioxidant activity of the strawberries frozen in the novel home freezing system was 8.96% higher after the freezing process. Brightness and redness of samples were protected better after quick freezing during storage. Nonetheless, no evident differences were observed in microbiological criteria.

  7. JCR分区: Q1 CAS分区: B2 影响因子: 4
  8. JCR分区: Q1 CAS分区: B2 影响因子: 4
  9. JCR分区: Q1 CAS分区: B2 影响因子: 4
  10. JCR分区: Q1 CAS分区: B2 影响因子: 4

    10. Density and viscosity of a polyol ester lubricant: Measurement and molecular dynamics simulation.

    作者:
    Lingnan Lin, Mark A Kedzierski
    日期:
    2020-01-01

    Polyol ester (POE) is the main component of many refrigeration lubricants. In this work, the density and the viscosity of a typical, pure polyol ester, pentaerythritol tetrahexanoate (PEC6), were measured over 258.15 K to 373.15 K and predicted with molecular dynamics simulations. Nonequilibrium molecular dynamics (NEMD) was employed to compute the shear viscosities for different shear rates. The Eyring model was used to fit the shear viscosities and to extrapolate to the Newtonian viscosity. A protocol was proposed to perform a NEMD-Eyring fit for a low-error, reproducible and robust Newtonian viscosity calculation. Three force fields, i.e., OPLS, LOPLS, and DREIDING, were tested in terms of their density and viscosity prediction accuracy. OPLS gave the best density prediction (within ± 0.2 %), while LOPLS showed the best viscosity prediction accuracy (within - 4 % to 20 %). This work illustrates the value of molecular simulation in predicting lubricant properties and its potential in guiding the design of POE lubricants for desired properties.

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指标接近的期刊