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artikkel ajakirjas EST
/
artikkel ajakirjas ENG
Methodology for evaluating the transition process dynamics towards 4th generation district heating systems
Volkova, Anna
;
Mašatin, Vladislav
;
Siirde, Andres
Energy
2018
/
p. 253-261 : ill
https://doi.org/10.1016/j.energy.2018.02.123
Journal metrics at Scopus
Article at Scopus
Journal metrics at WOS
Article at WOS
artikkel ajakirjas EST
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artikkel ajakirjas ENG
2
artikkel ajakirjas EST
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artikkel ajakirjas ENG
Technical improvement potential of large district heating network : application to the case of Tallinn, Estonia
Latõšov, Eduard
;
Volkova, Anna
;
Hlebnikov, Aleksandr
;
Siirde, Andres
Energy procedia
2018
/
p. 337-344 : ill
https://doi.org/10.1016/j.egypro.2018.08.197
Conference Proceedings at Scopus
Article at Scopus
Article at WOS
artikkel ajakirjas EST
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artikkel ajakirjas ENG
Kirjeid leitud 2, kuvan
1 - 2
võtmesõna
162
1.
low temperature
2.
low temperature district heating
3.
low temperature heating
4.
low temperature performance
5.
low temperature pyrolysis
6.
low temperature synthesis
7.
low-temperature
8.
low-temperature heat sources
9.
low-temperature dependence photoluminescence
10.
low-temperature district heating
11.
low-temperature heat sources
12.
low-temperature plasma
13.
low-temperature sulphur corrosion
14.
Very-low temperature crystallization peak
15.
air–water temperature difference
16.
C. high temperature corrosion
17.
classroom temperature
18.
color temperature
19.
colour temperature
20.
crystallization temperature
21.
design outdoor temperature
22.
effective carrier temperature
23.
elevated temperature
24.
high temperature
25.
high temperature corrosion
26.
high temperature electrolysis
27.
high temperature fatigue
28.
high temperature fuel cells
29.
high temperature impact-abrasion
30.
high temperature tribology
31.
high temperature wear
32.
High-Pressure High-Temperature Spark Plasma Sintering
33.
high-speed temperature scanner
34.
high-temperature
35.
high-temperature ceramic superconductors
36.
high-temperature differential thermal analysis (HDTA)
37.
high-temperature tribology
38.
high-temperature wear
39.
indoor air temperature
40.
indoor air temperature gradient
41.
indoor temperature
42.
indoor temperature after renovation
43.
interlayer temperature
44.
magma temperature
45.
mean radiant temperature
46.
Negative bias temperature instability
47.
Negative Bias Temperature Instability (NBTI)
48.
operative temperature
49.
pavement temperature
50.
positive temperature coefficient
51.
pressing temperature
52.
pressure-temperature conditions
53.
pyrolysis end-temperature
54.
radiant temperature
55.
radiative temperature
56.
return temperature
57.
room and hot temperature pressing
58.
room temperature
59.
room-temperature fluoride ion batteries
60.
running mean temperature
61.
sea surface temperature
62.
sea surface temperature (SST)
63.
self-propagating high temperature synthesized (SHS)
64.
Self-Propagating High-Temperature Synthesis
65.
sintering temperature
66.
Softening Temperature
67.
surface temperature
68.
temperature
69.
temperature change
70.
temperature control
71.
temperature dependence
72.
temperature effect
73.
temperature effect component
74.
temperature effects
75.
temperature extremes
76.
temperature factor
77.
temperature forecast
78.
temperature gradient
79.
temperature in contact area
80.
temperature influence
81.
temperature measurement
82.
temperature measurements
83.
temperature metrology
84.
temperature proxy
85.
temperature scale
86.
temperature sensors
87.
temperature setback efficiency
88.
water temperature
89.
weld temperature
90.
working temperature of luminaires
91.
Bluetooth low-energy tracking technology
92.
extremely low frequency
93.
high context and low context cultures
94.
humanism in the Low Countries
95.
hyper-branched linear low density PE
96.
Linear low-density polyethylene
97.
low birth weight
98.
low carbon
99.
low density areas
100.
low density polyethylene (LDPE)
101.
low dropout regulator
102.
low Earth Orbit
103.
low electric signals
104.
low energy building
105.
low energy buildings
106.
low energy house
107.
low energy office building
108.
low energy renovation
109.
low inertia
110.
low interest rates
111.
low molecular weight peptides
112.
low moor peat
113.
low noise
114.
low power
115.
low precision
116.
low speed
117.
low system strength
118.
low THD
119.
low voltage
120.
low voltage distribution grid
121.
low voltage grid
122.
low voltage networks
123.
low voltage ride-through (LVRT)
124.
low voltage S/TEM
125.
low voltage stress
126.
low voltage stress of switch
127.
low voltage stresses on switches and diodes
128.
low-/no-code
129.
low-alloy steel
130.
Low-and-Slow DoS attack
131.
low-carbon construction technology
132.
low-carbon ferritic-pearlitic steel
133.
low-carbon industry
134.
low-carbon technology
135.
low-code
136.
low-code development
137.
low-context and high-context
138.
low-density lipoprotein
139.
low-density lipoprotein (LDL) cholesterol
140.
low-density lipoprotein cholesterol
141.
low-density polyethylene
142.
low-density-polyethylene
143.
low-energy building
144.
low-energy buildings
145.
low-latency systems
146.
low-level control system transportation
147.
low-level fault redundancy
148.
low-level radiation
149.
Low-level RF EMF
150.
Low-moisture extrusion
151.
low-pass data filtering
152.
low-power ASIC design
153.
low-power device
154.
low-regime transition
155.
low-resistance hull
156.
low-resource
157.
low-resource languages
158.
low‐velocity anomalie
159.
low-voltage networks
160.
low-volume and make-to-order production
161.
oxidized low-density lipoproteins
162.
user in low voltage area
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