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。
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Paragliders are unique among human-carrying
aircraft in being easily portable. The complete equipment packs into a rucksack
and can be carried easily on the pilot's back, in a car, or on public
transport.[14] In comparison with other air sports, this substantially
simplifies travel to a suitable takeoff spot, the selection of a landing place
and return travel.
Tandem paragliders, designed to carry the
pilot and one passenger, are larger but otherwise similar. They usually fly
faster with higher trim speeds, are more resistant to collapse, and have a
slightly higher sink rate compared to solo paragliders.
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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).
大风降落的替代方法包括使用速度杆和大耳朵。速度杆可增加机翼的穿透力,并增加垂直下降率的少量增加。这使得在正式电路中更容易调节下降率。在极端情况下,建议您在离开线束后站在速度杆上,并保持在速度杆上,直到着陆和放气为止。大耳朵通常在电路高度管理期间使用。垂直下降速度增加,并且可以利用该优点将滑翔机带到适当的电路连接高度。大多数制造商都在高级机型中改变了大耳朵的操作技术。放开控制线后,C级滑翔机的大耳朵通常会保持折叠状态。在那种情况下,机翼可以大耳朵部署,以合理的安全降落。在那些机翼类型中,通常需要两到三个带有制动器的对称泵,再过一到两秒钟才能重新给叶尖充气。在较低额定值的机翼中,“大耳朵”需要保持固定状态以将耳朵固定。当它们固定在机翼中时,机翼往往会对侧倾轴上的重量变化(由于有效面积减小)产生更好的响应。释放管线后,它们会自动重新充气。通常,这些机翼更适合拉入耳朵以摆脱多余高度的情况。然后应在基脚或着陆前几秒钟恢复全翼飞行。机翼熟悉度是应用这些控件的关键要素。飞行员应在中等条件下在安全区域,安全高度和有降落选项的情况下练习。
Paragliding is the recreational and competitive adventure sport of flying paragliders: lightweight, free-flying,
foot-launched glider aircraft with no rigid primary structure.[1] The pilot sits in a harness suspended below a fabric wing. Wing shape is maintained by the suspension lines, the pressure of air entering vents in the front of the wing, and the aerodynamic forces of the air flowing over the outside.
Despite not using an engine, paragliderflights can last many hours and cover many hundreds of kilometres, though flights of one to two hours and covering some tens of kilometres are more the norm. By skillful exploitation of sources of lift, the pilot may gain height,
often climbing to altitudes of a few thousand metres.
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飞行中的机翼放气(崩溃)
由于机翼(机翼)的形状是由进入机翼并使之膨胀的运动空气形成的,因此在湍流的空气中,机翼的一部分或全部会收缩(塌陷)。被称为“主动飞行”的飞行员技术将**降低通气或坍塌的频率和严重性。这种通缩通常无需飞行员干预即可恢复。如果发生严重的放气,正确的飞行员输入将加快从放气中恢复的速度,但是错误的飞行员输入会减慢滑翔机返回正常飞行的速度,因此飞行员必须进行正确的训练和练习以应对放气。
在极少数情况下,无法从通缩中恢复(或从诸如旋转等其他威胁性状况中)恢复过来的情况下,大多数飞行员会携带备用(救援,紧急情况)降落伞。但是,大多数飞行员从来没有理由“扔”他们的储备。如果机翼在低空发生放气,即在起飞后不久或着陆前不久,机翼(滑翔伞)可能无法迅速恢复其正确的结构以防止发生,飞行员通常没有足够的剩余高度来部署后备力量降落伞[**小降落高度大约为60 m(200 ft),但通常在稳定期使用120-180 m(390-590 ft)的高度进行典型部署]。备用降落伞的不同包装方式会影响其部署时间。
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