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SIV是模拟d'Incident en Vol(飞行中的事件模拟)的缩写,是提供有关如何应对不稳定和潜在危险情况(例如倒塌,满是失速和开裂)的课程。这些课程通常由经过特殊培训的讲师在大片水域上讲授,通常通过无线电指导学生。将指导学生如何诱发危险情况,从而学习一旦被诱发就如何避免和补救。向希望获得更高性能和更不稳定机翼的飞行员推荐该课程,这对于大多数飞行员而言都是自然而然的进步。在某些国家,SIV课程是初步飞行员培训的基本要求。万一出现无法挽回的机动导致水着陆的情况,通常会派出一艘救援船来收集飞行员。其他增加的安全功能可能包括浮力辅助装置或辅助备用降落伞。这些课程对于新手级别的飞行不是必不可少的。


奉贤区进口滑翔伞新报价


A paragliding flight over the Mussel Rock

Gliding Bluffs in Pacifica, California

In

flatter countryside, pilots can also be launched with a tow. Once at full

height (towing can launch pilots up to 3000 feet altitude), the pilot pulls a

release cord, and the towline falls away. This requires separate training, as

flying on a winch has quite different characteristics from free flying. There

are two major ways to tow: pay-in and pay-out towing. Pay-in towing involves a

stationary winch that winds in the towline and thereby pulls the pilot in the

air. The distance between winch and pilot at the start is around 500 metres or

more. Pay-out towing involves a moving object, like a car or a boat, that pays

out line slower than the speed of the object, thereby pulling the pilot up in

the air. In both cases, it is very important to have a gauge indicating line

tension to avoid pulling the pilot out of the air. Another form of towing is

"static line" towing. This involves a moving object, like a car or a

boat, attached to a paraglider or hang glider with a fixed-length line. 徐汇区通用滑翔伞价格行情


热飞行


托里·派恩斯滑翔伞在空中滑翔伞

当太阳温暖地面时,它将使某些功能比其他功能(例如岩石表面或大型建筑物)加热得更多,而这些功能会引发通过空气上升的热量。有时,这些可能只是空气的简单上升;通常,它们在风中向侧面吹,会从源头脱落,随后形成新的热量。


一旦飞行员找到了热量,他便开始绕圈飞行,试图将圆圈定位在热量**强的部分(“**”)上,其中空气的上升**快。大多数飞行员使用可变高度计(“ vario”),通过嘟嘟声和/或视觉显示来指示爬升率,以帮助将热量插入磁芯中。


通常情况下,周围的热源周围有很强的水槽,当飞行员试图进入强热源时,也存在强烈的湍流,导致机翼塌陷。良好的热力飞行是一项需要花费时间学习的技能,但是好的飞行员通常可以将热力一直贯穿到整个云层。



越野飞行

一旦掌握了使用热量来获得高度的技巧,飞行员就可以从一个热量滑到另一个热量来穿越国家。在热量中获得高度后,飞行员会下滑到下一个可用热量。


潜在的热量可以通过通常会产生热量的陆地特征或积云来识别,这些积云标志着上升的一列温暖,潮湿的空气在到达**并凝结成云时的顶部。


越野飞行员还需要熟悉航空法律,飞行法规,指示空域受限的航空地图等。



The top of each line is attached to small

fabric loops sewn into the structure of the wing, which are generally arranged

in rows running span-wise (i.e., side to side). The row of lines nearest the

front are known as the A lines, the next row back the B lines, and so on.[14] A

typical wing will have A, B, C and D lines, but recently, there has been a

tendency to reduce the rows of lines to three, or even two (and experimentally

to one), to reduce drag.


Paraglider lines are usually made from

Dyneema/Spectra or Kevlar/Aramid.[14] Although they look rather slender, these

materials are immensely strong. For example, a single 0.66 mm-diameter line

(about the thinnest used) can have a breaking strength of 56 kg.[15]


Paraglider wings typically have an area of

20–35 square metres (220–380 sq ft) with a span of 8–12 metres (26–39 ft) and

weigh 3–7 kilograms (6.6–15.4 lb). Combined weight of wing, harness, reserve,

instruments, helmet, etc. is around 12–22 kilograms (26–49 lb).



The glide ratio of paragliders ranges from

9.3 for recreational wings to about 11.3 for modern competition models,[16]

reaching in some cases up to 13.[17] For comparison, a typical skydiving

parachute will achieve about 3:1 glide. A hang glider ranges from 9.5 for

recreational wings to about 16.5 for modern competition models. An idling

(gliding) Cessna 152 light aircraft will achieve 9:1. Some sailplanes can

achieve a glide ratio of up to 72:1.


The speed range of paragliders is typically

20–75 kilometres per hour (12–47 mph), from stall speed to maximum speed.

Beginner wings will be in the lower part of this range, high-performance wings

in the upper part of the range.[note 2]


For storage and carrying, the wing is

usually folded into a stuffsack (bag), which can then be stowed in a large

backpack along with the harness. For pilots who may not want the added weight

or fuss of a backpack, some modern harnesses include the ability to turn the

harness inside out such that it becomes a backpack.


小型滑翔伞全国发货

奉贤区进口滑翔伞新报价


显示滑翔伞各部分的横截面:

1)上表面

2)下表面

3)肋骨

4)对角肋

5)上线级联

6)中线串级

7)下线级联

8)立管

滑翔伞的机翼或机盖通常在工程上称为“冲压空气翼型”。这样的翼包括两层织物,它们以形成一排网孔的方式连接到内部支撑材料上。通过使大多数舱室*在前缘处敞开,进入的空气使机翼保持充气状态,从而保持其形状。充气时,机翼的横截面具有典型的泪滴翼型形状。现代滑翔伞的机翼是由高性能的无孔材料制成的,例如尼龙纤维。

在某些现代滑翔伞(从1990年开始中,尤其是性能更高的机翼中,前缘的某些舱室被封闭以形成更干净的空气动力学轮廓。内部肋骨上的孔允许空气从开孔到这些闭孔的自由流动,以使它们膨胀,并向也闭合的翼尖膨胀。


飞行员通过悬吊线网络支撑在机翼下方。这些从两根短的(40厘米)长的坚固织带制成的立管开始。每组由一个登山扣固定在吊带上,飞行员的每一侧上各有一个,每个组的立管通常*从机翼一侧的一行上连接到绳索上。在该组的每个立管的末端,都有一个小三角洲的马龙,上面挂有数行(2 – 5)条线,形成一个风扇。这些线通常长4 – 5米,末端连接到大约2 m的另外2 – 4条线上,这些线又连接到一组更细的细线上。在某些情况下,对第四级联重复此操作。


奉贤区进口滑翔伞新报价

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