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).
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Forward launch
In low winds, the wing is inflated with a
forward launch, where the pilot runs forward with the wing behind so that the
air pressure generated by the forward movement inflates the wing.
It is often easier, because the pilot only
has to run forward, but the pilot cannot see his wing until it is above him,
where he has to check it in a very short time for correct inflation and
untangled lines before the launch.
Reverse launch
File:Paraglider launch Mam T
Paraglider reverse launch, Mam Tor, England
In higher winds, a reverse launch is used,
with the pilot facing the wing to bring it up into a flying position, then
turning around under the wing and running to complete the launch.
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Radio
Radio communications are used in training,
to communicate with other pilots, and to report where and when they intend to
land. These radios normally operate on a range of frequencies in different
countries—some authorised,[18][19] some illegal but tolerated locally. Some
local authorities (e.g., flight clubs) offer periodic automated weather updates
on these frequencies. In rare cases, pilots use radios to talk to airport
control towers or air traffic controllers. Many pilots carry a cell phone so
they can call for pickup should they land away from their intended point of
destination.
GPS
GPS (global positioning system) is a
necessary accessory when flying competitions, where it has to be demonstrated
that way-points have been correctly passed. The recorded GPS track of a flight
can be used to analyze flying technique or can be shared with other pilots. GPS
is also used to determine drift due to the prevailing wind when flying at
altitude, providing position information to allow restricted airspace to be
avoided and identifying one's location for retrieval teams after landing out in
unfamiliar territory.
安全
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像任何极限运动一样,滑翔伞是一种潜在的危险活动。例如,在美国,2010年,一名滑翔伞飞行员死亡。这相当于5,000名飞行员中的一名。在1994-2010年间,每10,000名活跃的滑翔伞飞行员中平均有7人受到致命伤害,尽管近年来情况已有明显改善。在法国(有超过25,000名注册机员),2011年每10,000名飞行员中有2人受伤(这一比率并非2007-2011年的非典型),尽管每1,000名飞行员中约有6人受到严重伤害(超过2名飞行员,日间住院)。
通过培训和风险管理可以**减少伤害的可能性。使用适当的设备,例如为飞行员的身材和技能水平设计的机翼[28],以及头盔,备用降落伞[29]和缓冲式安全带[30],也可以很大程度地降低风险。飞行员的安全受到对现场条件(如空气湍流(转子),强热,狂风和地面障碍物,如电力线)的了解的影响。胜任的教练对机翼控制和紧急演习进行足够的飞行员培训可以很大程度地减少。许多滑翔伞是飞行员错误和飞行条件差的结果。
着陆涉及更多的计划,因为可能有多个飞行员必须同时着陆。因此,已经建立了特定的流量模式。飞行员排在飞机场上方并降落在降落区一侧,该位置取决于风向,飞行员可能会因坐飞机而失去身高(如有必要)。从该位置开始,它们以矩形模式沿着飞行路径的腿到达着陆区:顺风腿进场。这允许在多个飞行员之间进行同步,并减少发生碰撞的风险,因为飞行员可以预测他周围的其他飞行员接下来将要做什么。
技术技巧
在进近下降过程中,在接触地面大约四米之前,可以施加一些瞬时制动,然后使用向前的摆动动量来获得速度,以更有效地展开并以**小的垂直速度接近地面。
在小风中,一些小跑很常见。在中等到中等的逆风中,着陆时可能没有前进速度,甚至在强风中甚至可能相对于地面后退。用风着陆会迫使飞行员向后退,这特别危险,因为它可能会翻滚并被拖拽。当机翼垂直于飞行员上方时,有可能降低风险放气。这涉及到每只手在槌/竖板交界处抓住前缘线(As),并通过深深的膝盖弯曲动作来施加飞行员的全部重量。在几乎每种情况下,机翼的前缘都会向前飞一点,然后“折”。然后,它可能会坍塌并下降到飞行员的上风处。在地面上,它将被飞行员的腿约束。
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The next step in the launch is to bring the
wing into the lift zone. There are two techniques for accomplishing this
depending on wind conditions. In light wind this is usually done after turning
to the front, steering with the feet towards the low wing tip, and applying
light brakes in a natural sense to keep the wing horizontal. In stronger wind
conditions it is often found to be easier to remain facing downwind while
moving slowly and steadily backwards into the wind.
Knees bent to load the wing, foot
adjustments to remain central and minimum use of Cs or Brakes to keep the wing
horizontal. Pirouette when the feet are close to lifting. This option has two
distinct advantages. a) The pilot can see the wing centre marker (an aid to
centring the feet) and, if necessary, b) the pilot can move briskly towards the
wing to assist with an emergency deflation.
With either method it is essential to check
"traffic" across the launch face before committing to flight.
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上海翼舞航空科技有限公司创立于2017-03-08,总部位于上海市,是一家上海翼舞航空科技有限公司旗下的专业公司,一直以来我们都向广大的航空爱好者和专业人士提供质量、低价的纯进口轻型航空器材,我们提供的设备有滑翔伞、动力伞、三角翼、动力三角翼、水上动力三角翼和固定翼轻型飞机,我们的产品应用于个人户外运动探险、航空杂技表演、警察空中巡逻、电力网线架设和巡视、电视航空拍摄、灾害检查收救、大型赛事活动直播、景点空中观赏、空中农药喷洒等一系列领域的公司。翼舞深耕行业多年,始终以客户的需求为向导,为客户提供***的[ "动力伞", "滑翔伞", "飞行", "热汽球" ]。公司终坚持自主研发创新发展理念,不断优化的技术、产品为客户带来效益,目前年营业额达到10万元以下。翼舞始终关注运动、休闲市场,以敏锐的市场洞察力以准确定位,实现与客户的成长共赢。
为连通各层之间的线路,在各层需要连通的导线的文汇处钻上一个公共孔,这就是过孔。工艺上在过孔的孔壁圆柱面上用化学沉积的方法镀上一层金属,用以连通中间各层需要连通的铜箔,而过孔的上下两面做成普通的焊盘形状,可直接与上下两面的线路相通,也可不连。一般而言,设计线路时对过孔的处理有以下原则:(1)尽量少用过孔,一旦选用了过孔,务必处理好它与周边各实体的间隙,特别是容易被忽视的中间各层与过孔不相连的线与过孔的间隙,如果是自动布线,可在“过孔数量**小化” ( Via Minimiz8tion)子菜单里选择“on”项来自动解决。因沉金与镀金所形成的晶体结构不一样,沉金较镀金来说更容易焊接,不会造成焊接不良...