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Artykuły w czasopismach na temat "PCM-DH"

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Kurniati, Nia, Ivylentine Datu Palittin, I. M. Sutjahja, and Daniel Kurnia. "The Effect of Additives on the Crystallization PCM CaCl2.6H2O for Stabilizing the Air Temperature for Energy Conservation." Advanced Materials Research 1112 (July 2015): 563–66. http://dx.doi.org/10.4028/www.scientific.net/amr.1112.563.

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Phase Change Material (PCM) is a material that uses the phase transition properties as latent heat storage for certain application. Salt hydrate CaCl2.6H2O (melting temperature, Tm= 29°C, and melting entalphy, DH = 190 kJ/kg) is a common inorganic PCM that can be used for regulating the air temperature of the room, in order to reduce the electrical energy consumption for energy conservation. General problems of inorganic PCM, in particular during the crystallization or latent heat release, are the subcooling and phase separation effects. It is worth mentioning that understanding the crystalliz
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Li, Song, Lei Liu, Yongfa Zhang, Qian Zhang, and Qi Cai. "The Solution Method for Ultra-Fine Group Slowing-Down Equations Applicable to Stochastic Media." Mathematics 13, no. 11 (2025): 1857. https://doi.org/10.3390/math13111857.

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This study presents an innovative solution method for ultra-fine group slowing-down equations tailored to stochastic media with double heterogeneity (DH), focusing on advanced nuclear fuels such as fully ceramic microencapsulated (FCM) fuel and Mixed Oxide (MOX) fuel. Addressing the limitations of conventional resonance calculation methods in handling DH effects, the proposed UFGSP method (the ultra-fine group slowing-down method with the Sanchez–Pomraning method) integrates the Sanchez–Pomraning technique with the ultra-fine group transport theory to resolve spatially dependent resonance cros
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Abdi, Amir, Justin Ningwei Chiu, and Viktoria Martin. "Numerical Investigation of Latent Thermal Storage in a Compact Heat Exchanger Using Mini-Channels." Applied Sciences 11, no. 13 (2021): 5985. http://dx.doi.org/10.3390/app11135985.

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This paper aims to numerically investigate the thermal enhancement of a latent thermal energy storage component with mini-channels as air passages. The investigated channels in two sizes of internal air passages (channel-1 with dh = 1.6 mm and channel-2 with dh = 2.3 mm) are oriented vertically in a cuboid of 0.15 × 0.15 × 0.1 m3 with RT22 as the PCM located in the shell. The phase change is simulated with a fixed inlet temperature of air, using ANSYS Fluent 19.5, with a varying number of channels and a ranging air flow rate entering the component. The results show that the phase change power
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Palittin, Ivylentine Datu, Nia Kurniati, I. M. Sutjahja, and Daniel Kurnia. "Sonocrystallization Technique to Optimizing the Crystallization Process of PCM CaCl2.6H2O." Advanced Materials Research 1112 (July 2015): 559–62. http://dx.doi.org/10.4028/www.scientific.net/amr.1112.559.

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Salt hydrate CaCl2.6H2O is one of inorganic Phase Change Material (PCM) that have melting temperature (Tm) of about 29 °C and latent heat of fusion (DH) of around 190 kJ/kg that can be used for latent thermal energy storage. This material can be used for conditioning the air-temperature of the room, in order to reduce the electrical energy consumption for air conditioning (AC) system. In order to reduce the subcooling and phase separation effects of CaCl2.6H2O to maintain its performance, we adopt sonocrystallization technique that uses ultrasound radiation for crystallization of CaCl2.6H2O. T
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Lei, Lou, Chai Xiaoming, Yao Dong, et al. "Theoretically Modified Optical Length Research on the Physical Boundary of the Double-Heterogeneous System." Frontiers in Energy Research 9 (February 9, 2022). http://dx.doi.org/10.3389/fenrg.2021.773067.

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Because of the double-heterogeneity (DH), dispersed particle-type systems cannot be described by traditional neutronic programs, and the volumetric homogenization method (VHM) will bring reactivity calculation deviation because of ignoring the spatial self-shielding effect of the particles. In this article, the relationship between the reactivity calculation deviation and the optical length of dispersed particle-type fuel and different types of burnable poisons is analyzed. Also then, it was proposed that the influencing factors of reactivity calculation deviation can be integrated to a physic
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Liu, Pengfei, Yuqing Chen, Song Li, and Lei Lou. "An improved optical length research on the physical boundary of particle-dispersed fuel." Frontiers in Energy Research 12 (March 8, 2024). http://dx.doi.org/10.3389/fenrg.2024.1321444.

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The Volumetric Homogenization Method (VHM) is one of the most commonly used methods for neutronics calculation in reactors or components. However, the use of VHM for the Double-Heterogeneous (DH) System may lead to a large deviation in reactivity calculation. The deviation of DH System using the VHM can be expressed by the theoretically modified optical length. When the theoretically modified optical length is less than 10−4, the deviation caused by the VHM will be less than 100 pcm. This paper points out that the existing theoretically modified optical length for some cases of DH systems is n
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Julie, Kazimiroff, Spal Sydney, Farson Deborah, and Meissner Paul. "Integrating Dental Care into Patient Centered Medical Homes and Accountable Care Organizations: A United States of America Perspective." August 10, 2016. https://doi.org/10.19070/2377-8075-1600060.

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Increasing evidence links oral health to total physical and mental health and, underscores the need to integrate dental health programs with medical care. The newly emerging transition to Patient Centered Medical Homes (PCMH) and Accountable Care Organizations (ACOs) aligns payment and provides incentives for health systems to pursue this strategy. PCMH and ACOs are efforts to improve patient outcomes by creating partnerships between patients, physicians, hospitals, and other caregiving institutions to provide evidenced-based medical care, while slowing the growth of health-related costs. Alth
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Części książek na temat "PCM-DH"

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Shim, Hiuk Jae, and Byeungwoo Jeon. "DH-LZW: Lossless Data Hiding Method in LZW Compression." In Advances in Multimedia Information Processing - PCM 2004. Springer Berlin Heidelberg, 2004. http://dx.doi.org/10.1007/978-3-540-30543-9_92.

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