High Temperature Superconducting Magnetic Levitation

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9.4 HTS FESS principle model Ë 347

Tab


. 9.4:


Parameters of HTSBs of Boeing, ATZ, ISTEC, KAIST and Nexans.


Boeing

ATZ

ISTEC

KAIST

Nexans

HTSB

Type

ASB

RSB (inner PM rotor)

RSB (outer PM rotor)

ASB

RSB (inner PM rotor)

HTS stator

Regular hexagonsingle-grain YBCO bulks,36 mm

×36 mm

×4.5 mm

55 pieces of three- seedsrectangular YBCO bulks,65 mm

×35 mm

×13 mm, OD

230 mm, ID205 mm

×120 mm [60]

40 pieces of roof tile shapedYBCO bulks with epoxy resinprotection, OD 123.2 mm,ID 93.2 mm, length60 mm

×5 stories [24]

7 pieces of disc typeYBCO bulks,휙10 mm

×1.8 mm

[64]

270 pieces of squaresingle-grain YBCO bulks,35 mm

×35 mm

×10 mm,

ID 325 mm

×305 mm

[19]

PM rotor


휙220 mm, PM ring
(radial polarity)

+

iron

ring, 4 magnetic poles[17]

휙200 mm

×∼

120 mm, PM

ring (axial polarity, OD200 mm

×ID 150 mm

×

8 mm)

+

iron ring [18], about 8
magnetic poles [30]

OD

∼휙

170 mm

×∼

300 mm

[71], PM ring (axial polarity)+

iron ring, 16 magnetic
poles [24]


휙25 mm, Single PM
ring (axial polarity)[64]

OD 319 mm, PM ring(axial polarity)

+

iron

ring, 20 magnetic poles[19]

Working gap Several mm [17]

2 mm [60]

1.8 mm [71]

1 ∼

7 mm [64]

1 mm [19]

Coolingsystem

Stirling-cycle cryocooler(15 W @ 77 K), G-10supportor [17]

Liquid nitrogen, 72

∼79 K,

G-10 cryostat [18] (Now by35 W/80 K G/M cryocooler[30])

Liquid nitrogen [24]

Stirling cryocooler[64]

“Coolpower 140T”(Leybold VakuumGmbH), stainless steelDewar [19]

Experimentalspeed

14510 rpm [28]

3200 rpm [60]

11250 rpm [27]

51000 rpm [64]

4400 rpm [19]

Mainperformance

Working gap is 3.2 mm,axial stiffness of144 N/mm, radialstiffness of 69 N/mm [72]

At 72 K, radial force andstiffness of 4.7 kN (3.2 mm)and 1.8 kN/mm, axial forceand stiffness of 10.08 kN(3.3 mm) and 4.5 kN/mm [18]

Maximum axial force of8.7 kN [23]

Mass of the flywheelis 63.2 g [64]

Radial carrying capacityof 6900 N, radialstiffness of5.1 kN/mm@ 28 K [19]

Loss

∼−

4 rpm/min (working
gap

=3.9 mm, 5000 rpm,
50 K) [28]

COF of 2.8

×^10

−^6

,

−^5

×

10

−^4

Nm [18]

Simulated energy loss of0.55 mW/N at 6000 rpm for100 kWh HTSB model [27]

COF of 0.001

∼0.002

(working gap of7 mm) [64]

Application 5 kWh/ 3 kW-208 V AC

FESS [17], design speedof 20000 rpm (10 kWh)[16]

5 kWh/250 kW FESS with600 kg rotor [30], designspeed of 10000 rpm (10 kWh)[60]

10 kWh/15 kW FESS with425 kg rotor, design speedof 15860 rpm (10 kWh) [23]

337 J FESS for energystorage [64] andattitude control ofnano-satellites [66]

4 MW HTS generator,supporting the 1000 kgshaft [19]
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