Applied Thermal Engineering, ISSN 1359-4311, 02/2019, Volume 148, pp. 1359 - 1369
Experiments were conducted using a small wind tunnel to identify the thermal behavior during energy charging processes of phase change material (PCM) in...
Phase change material (PCM) | Ventilated slabs | Latent energy storage | Energy storage capacity | Energy charging speed | HEAT-EXCHANGER | ENERGY & FUELS | CONVECTION | SOLIDIFICATION | ENGINEERING, MECHANICAL | MECHANICS | THERMODYNAMICS | ENERGY-STORAGE | BUILDINGS | Paraffins | Temperature | Charging | Melting | Inclination angle | Wind tunnels | Enthalpy | Aspect ratio | Phase transitions | Free convection | High density polyethylenes | Inclination | Phase change materials | Storage capacity | Melt temperature | Air temperature | Thermodynamic properties | Thermal storage | Slabs | Energy storage
Phase change material (PCM) | Ventilated slabs | Latent energy storage | Energy storage capacity | Energy charging speed | HEAT-EXCHANGER | ENERGY & FUELS | CONVECTION | SOLIDIFICATION | ENGINEERING, MECHANICAL | MECHANICS | THERMODYNAMICS | ENERGY-STORAGE | BUILDINGS | Paraffins | Temperature | Charging | Melting | Inclination angle | Wind tunnels | Enthalpy | Aspect ratio | Phase transitions | Free convection | High density polyethylenes | Inclination | Phase change materials | Storage capacity | Melt temperature | Air temperature | Thermodynamic properties | Thermal storage | Slabs | Energy storage
Journal Article
Energy, ISSN 0360-5442, 08/2019, Volume 180, pp. 858 - 872
The use of phase change materials (PCMs) in building envelopes is a promising energy efficiency technology. Nevertheless, it is difficult to design a PCM wall...
Phase change material | Temperature amplitude | Building wall | Thermal inertia | Heat flux reduction | TIME-LAG | ENERGY STORAGE | ENERGY & FUELS | PERFORMANCE | CONCRETE | THERMODYNAMICS | DECREMENT FACTOR | ENVELOPES | SAVINGS | SYSTEMS | OPTIMIZATION | PCM | Energy conservation | Analysis | Energy efficiency | Temperature | Computer simulation | Construction materials | Surface temperature | Summer | Phase transitions | Thermal energy | Heat flux | Phase change materials | Winter | Temperature effects | Building envelopes | Energy envelope concept | Walls
Phase change material | Temperature amplitude | Building wall | Thermal inertia | Heat flux reduction | TIME-LAG | ENERGY STORAGE | ENERGY & FUELS | PERFORMANCE | CONCRETE | THERMODYNAMICS | DECREMENT FACTOR | ENVELOPES | SAVINGS | SYSTEMS | OPTIMIZATION | PCM | Energy conservation | Analysis | Energy efficiency | Temperature | Computer simulation | Construction materials | Surface temperature | Summer | Phase transitions | Thermal energy | Heat flux | Phase change materials | Winter | Temperature effects | Building envelopes | Energy envelope concept | Walls
Journal Article
3.
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Autoactivation of matriptase in vitro: requirement for biomembrane and LDL receptor domain
American Journal of Physiology - Cell Physiology, ISSN 0363-6143, 07/2007, Volume 293, Issue 1, pp. 95 - 105
In live cells, autoactivation of matriptase, a membrane-bound serine protease, can be induced by lysophospholipids, androgens, and the polyanionic compound...
Low-density lipoprotein | Protease activation | Hepatocyte growth factor activator inhibitor 1 | hepatocyte growth factor activator inhibitor 1 | SURFACE PROTEOLYTIC-ENZYMES | PHYSIOLOGY | EPIDERMAL BARRIER FUNCTION | FACTOR ACTIVATOR INHIBITOR-1 | HEPATOCYTE GROWTH-FACTOR | OVARIAN-CANCER | protease activation | low-density lipoprotein | GREEN FLUORESCENT PROTEINS | CELL BIOLOGY | BREAST-CANCER CELLS | EPITHELIAL-CELLS | TRANSMEMBRANE SERINE-PROTEASE | LIVING CELLS | Cell Line | Mammary Glands, Human - cytology | Temperature | Epithelial Cells - drug effects | Humans | Proteinase Inhibitory Proteins, Secretory - metabolism | Receptors, LDL - metabolism | Antibodies, Monoclonal | Protein Transport | Protease Inhibitors - pharmacology | Cell-Free System - metabolism | Osmolar Concentration | Epithelial Cells - enzymology | Serine Endopeptidases - immunology | Protein Binding | Cell Membrane - metabolism | Serine Endopeptidases - metabolism | Enzyme Activation | Kinetics | Lipid Bilayers - metabolism | Mammary Glands, Human - enzymology | Hydrogen-Ion Concentration | Mammary Glands, Human - drug effects
Low-density lipoprotein | Protease activation | Hepatocyte growth factor activator inhibitor 1 | hepatocyte growth factor activator inhibitor 1 | SURFACE PROTEOLYTIC-ENZYMES | PHYSIOLOGY | EPIDERMAL BARRIER FUNCTION | FACTOR ACTIVATOR INHIBITOR-1 | HEPATOCYTE GROWTH-FACTOR | OVARIAN-CANCER | protease activation | low-density lipoprotein | GREEN FLUORESCENT PROTEINS | CELL BIOLOGY | BREAST-CANCER CELLS | EPITHELIAL-CELLS | TRANSMEMBRANE SERINE-PROTEASE | LIVING CELLS | Cell Line | Mammary Glands, Human - cytology | Temperature | Epithelial Cells - drug effects | Humans | Proteinase Inhibitory Proteins, Secretory - metabolism | Receptors, LDL - metabolism | Antibodies, Monoclonal | Protein Transport | Protease Inhibitors - pharmacology | Cell-Free System - metabolism | Osmolar Concentration | Epithelial Cells - enzymology | Serine Endopeptidases - immunology | Protein Binding | Cell Membrane - metabolism | Serine Endopeptidases - metabolism | Enzyme Activation | Kinetics | Lipid Bilayers - metabolism | Mammary Glands, Human - enzymology | Hydrogen-Ion Concentration | Mammary Glands, Human - drug effects
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 01/2018, Volume 155, pp. 230 - 242
Thermoelectric cooler (TEC) is attractive for cooling electronic devices because of its light, compact size, quiet and vibration free characteristics. However,...
Thermoelectric cooler (TEC) | Electronic devices | Air flow rate | Refrigerant filling ratio | Heat pipe | COOLING SYSTEM | DESIGN | MECHANICS | THERMODYNAMICS | ENERGY & FUELS | THERMAL PERFORMANCE | FIN
Thermoelectric cooler (TEC) | Electronic devices | Air flow rate | Refrigerant filling ratio | Heat pipe | COOLING SYSTEM | DESIGN | MECHANICS | THERMODYNAMICS | ENERGY & FUELS | THERMAL PERFORMANCE | FIN
Journal Article
Phase Transitions, ISSN 0141-1594, 06/2018, Volume 91, Issue 6, pp. 667 - 680
Differential scanning calorimetry (DSC) analysis is a standard thermal analysis technique used to determine the phase transition temperature, enthalpy, heat of...
activation energy | Differential scanning calorimetry (DSC) | latent heat of fusion | phase transition temperature | STORAGE | PHYSICS, CONDENSED MATTER | CRYSTALLOGRAPHY | SIMULATION | CURVES | THERMAL-ANALYSIS | T-HISTORY | ACCURACY | MIXTURES | HEAT | HISTORY METHOD | FREEZING-POINT | Differential scanning calorimetry | Transition temperature | Melting | Calcium | Heating rate | Enthalpy | Heat measurement | Heat of fusion | Phase transitions | Calcium chloride | Phase change materials | Specific heat | Transition temperatures | Heat | Melt temperature | Thermal conductivity | Calorimetry | Thermal analysis | Activation energy
activation energy | Differential scanning calorimetry (DSC) | latent heat of fusion | phase transition temperature | STORAGE | PHYSICS, CONDENSED MATTER | CRYSTALLOGRAPHY | SIMULATION | CURVES | THERMAL-ANALYSIS | T-HISTORY | ACCURACY | MIXTURES | HEAT | HISTORY METHOD | FREEZING-POINT | Differential scanning calorimetry | Transition temperature | Melting | Calcium | Heating rate | Enthalpy | Heat measurement | Heat of fusion | Phase transitions | Calcium chloride | Phase change materials | Specific heat | Transition temperatures | Heat | Melt temperature | Thermal conductivity | Calorimetry | Thermal analysis | Activation energy
Journal Article
Applied Thermal Engineering, ISSN 1359-4311, 01/2020, Volume 164, p. 114528
To understand the energy charging process of a plate-type thermal energy storage unit using phase change materials (PCMs) under various conditions, an...
Plate-type thermal energy storage unit | Sensitivity analysis | Liquid fraction | Energy storage density | Taguchi optimization | Melting time
Plate-type thermal energy storage unit | Sensitivity analysis | Liquid fraction | Energy storage density | Taguchi optimization | Melting time
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Experimental investigations on the heat transfer of melting phase change material (PCM)
Energy Procedia, ISSN 1876-6102, 10/2018, Volume 152, pp. 186 - 191
Experiments were conducted to figure out the heat transfer mechanisms during the melting process of phase change materials (PCMs) in high-density polyethylene...
natural convection | phase change material (PCM) | energy charging | heat transfer | ventilated panel | Phase change material (PCM) | Natural convection | Ventilated panel | Energy charging | Heat transfer
natural convection | phase change material (PCM) | energy charging | heat transfer | ventilated panel | Phase change material (PCM) | Natural convection | Ventilated panel | Energy charging | Heat transfer
Journal Article
BUILDING SIMULATION, ISSN 1996-3599, 08/2019, Volume 12, Issue 4, pp. 629 - 640
To reduce the heat transfer between outdoor and indoor environments, phase change materials (PCMs) were introduced to building envelopes. Research has shown...
LOCATION | CHANGE MATERIAL PCM | WALLS | temperature reduction and elevation | ENERGY-CONSUMPTION | phase transition temperature | thermal resistance | building envelope | THERMODYNAMICS | CONSTRUCTION & BUILDING TECHNOLOGY | REDUCTION | SAVINGS | LAYER | phase change material | Radiation
LOCATION | CHANGE MATERIAL PCM | WALLS | temperature reduction and elevation | ENERGY-CONSUMPTION | phase transition temperature | thermal resistance | building envelope | THERMODYNAMICS | CONSTRUCTION & BUILDING TECHNOLOGY | REDUCTION | SAVINGS | LAYER | phase change material | Radiation
Journal Article
Energy Conversion and Management, ISSN 0196-8904, 01/2018, Volume 155, p. 230
Thermoelectric cooler (TEC) is attractive for cooling electronic devices because of its light, compact size, quiet and vibration free characteristics. However,...
Electronic equipment | Gravitation | Vibration | Cooling | Electronic devices | Cooling rate | Feasibility studies | Flow rates | Air flow | Thermal resistance | Electronics industry | Test chambers | Air temperature | Heat pipes | Thermoelectric cooling | Flow velocity | Miniaturization | Energy management | Refrigerants | Heat transfer | Gravity
Electronic equipment | Gravitation | Vibration | Cooling | Electronic devices | Cooling rate | Feasibility studies | Flow rates | Air flow | Thermal resistance | Electronics industry | Test chambers | Air temperature | Heat pipes | Thermoelectric cooling | Flow velocity | Miniaturization | Energy management | Refrigerants | Heat transfer | Gravity
Journal Article
Journal of Marine Engineering & Technology, ISSN 2046-4177, 05/2015, Volume 14, Issue 2, pp. 57 - 60
Selective catalytic reduction (SCR) is a promising technique for reducing nitrogen oxide (NO x ) emissions from diesel engines. Static mixers are widely used...
REYNOLDS-NUMBER | ENGINEERING, MARINE | HEAT-TRANSFER | KENICS | OPTIMIZATION | NUMERICAL-SIMULATION | FLOW
REYNOLDS-NUMBER | ENGINEERING, MARINE | HEAT-TRANSFER | KENICS | OPTIMIZATION | NUMERICAL-SIMULATION | FLOW
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Journal Article
Cancer Research, ISSN 0008-5472, 04/2011, Volume 71, Issue 8 Supplement, pp. 3674 - 3674
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工会博览:理论研究, ISSN 1009-9166, 2009, Issue 11, pp. 98 - 99
Journal Article
Cellular Physiology and Biochemistry, ISSN 1015-8987, 12/2016, Volume 40, Issue 3-4, p. 818
Journal Article
American Journal of Physiology, ISSN 0363-6143, 07/2007, Volume 293, Issue 1, p. C95
In live cells, autoactivation of matriptase, a membrane-bound serine protease, can be induced by lysophospholipids, androgens, and the polyanionic compound...
Proteins | Membranes | Proteases | Monoclonal antibodies | Low density lipoprotein receptors | Biochemistry | Cells
Proteins | Membranes | Proteases | Monoclonal antibodies | Low density lipoprotein receptors | Biochemistry | Cells
Journal Article
Cellular Physiology and Biochemistry, ISSN 1015-8987, 11/2016, Volume 39, Issue 5, p. 1964
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人民论坛, ISSN 1004-3381, 2017, Issue 11, pp. 80 - 81
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Physical Review A, ISSN 1050-2947, 1990, Volume 41, Issue 1, pp. 42 - 48
Journal Article
12/2017
The utility model provides a low temperature plasma preliminary heat treatment in oxidizing is united SCR SOx/NOx control and is fallen dust removal set...
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS | TRANSPORTING | TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE | CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TOTRANSPORTATION | GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS | SEPARATION | PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL | PERFORMING OPERATIONS | GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS | TRANSPORTING | TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE | CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TOTRANSPORTATION | GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS | SEPARATION | PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL | PERFORMING OPERATIONS | GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
Patent
05/2017
The invention discloses a desulfidation, denitration, noise reduction and dust removal compound device associating low-temperature plasma preoxidation with SCR...
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS | TRANSPORTING | TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE | CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TOTRANSPORTATION | GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS | SEPARATION | PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL | PERFORMING OPERATIONS | GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS | TRANSPORTING | TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINSTCLIMATE CHANGE | CLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TOTRANSPORTATION | GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS | SEPARATION | PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL | PERFORMING OPERATIONS | GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC
Patent
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