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		<title>WikiSysop: Created page with &quot; '''Exract: TC 1-211 AIRCREW TRAINING MANUAL UTILITY HELICOPTER, UH-1H/V SERIES'''    '''TASK 2095'''  '''PERFORM SIMULATED MAXIMUM GROSS WEIGHT TAKEOFF'''    '''Note:''' Task...&quot;</title>
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				<updated>2020-02-20T05:54:42Z</updated>
		
		<summary type="html">&lt;p&gt;Created page with &amp;quot; &amp;#039;&amp;#039;&amp;#039;Exract: TC 1-211 AIRCREW TRAINING MANUAL UTILITY HELICOPTER, UH-1H/V SERIES&amp;#039;&amp;#039;&amp;#039;    &amp;#039;&amp;#039;&amp;#039;TASK 2095&amp;#039;&amp;#039;&amp;#039;  &amp;#039;&amp;#039;&amp;#039;PERFORM SIMULATED MAXIMUM GROSS WEIGHT TAKEOFF&amp;#039;&amp;#039;&amp;#039;    &amp;#039;&amp;#039;&amp;#039;Note:&amp;#039;&amp;#039;&amp;#039; Task...&amp;quot;&lt;/p&gt;
&lt;p&gt;&lt;b&gt;New page&lt;/b&gt;&lt;/p&gt;&lt;div&gt; '''Exract: TC 1-211 AIRCREW TRAINING MANUAL UTILITY HELICOPTER, UH-1H/V SERIES'''&lt;br /&gt;
 &lt;br /&gt;
 '''TASK 2095'''&lt;br /&gt;
 '''PERFORM SIMULATED MAXIMUM GROSS WEIGHT TAKEOFF'''&lt;br /&gt;
 &lt;br /&gt;
 '''Note:''' Tasks 2090, 2093, and 2095 are power management tasks. While listed individually in&lt;br /&gt;
 this aircrew training manual (ATM), performance of these tasks is interrelated and should be&lt;br /&gt;
 taught and trained as such. Refer to appendix B of this ATM for more detailed information.&lt;br /&gt;
 &lt;br /&gt;
 '''CONDITIONS:''' In a UH-1 helicopter with the hover power and before-takeoff checks completed.&lt;br /&gt;
 &lt;br /&gt;
 '''STANDARDS:''' Appropriate common standards plus these additions/modifications:&lt;br /&gt;
 1. Correctly select the type of takeoff requiring the minimum amount of power to safely&lt;br /&gt;
 complete the maneuver.&lt;br /&gt;
 &lt;br /&gt;
 2. Accurately predict the torque/power required for the maneuver.&lt;br /&gt;
 &lt;br /&gt;
 3. The pilot on the controls (P*) will determine the point where the aircraft will enter effective&lt;br /&gt;
 translational lift (ETL) for the type of takeoff being performed.&lt;br /&gt;
 &lt;br /&gt;
 4. Establish abort point and reconfirm escape plan determined in the reconnaissance.&lt;br /&gt;
 &lt;br /&gt;
 5. Use the minimum power necessary for the takeoff being performed.&lt;br /&gt;
 &lt;br /&gt;
 6. Conduct post-task analysis (PTA) after takeoff.&lt;br /&gt;
 &lt;br /&gt;
 '''DESCRIPTION:'''&lt;br /&gt;
 1. Crew actions.&lt;br /&gt;
 &lt;br /&gt;
  a. After reassessing the landing zone (LZ) surface, winds, and obstacles, the P* will select&lt;br /&gt;
  the type of takeoff: level acceleration (best angle of climb or best rate of climb), constant&lt;br /&gt;
  angle, or vertical. The P* will then determine the ETL point for the takeoff, reaffirm the&lt;br /&gt;
  predicted torque for the takeoff, and announce the abort plan.&lt;br /&gt;
  &lt;br /&gt;
  b. The pilot not on the controls (P)/nonrated crewmember (NCM) will announce when&lt;br /&gt;
  ready for takeoff and will focus their attention primarily outside the aircraft to assist in&lt;br /&gt;
  clearing obstacles. The P will cross-monitor torque and note the amount of power used&lt;br /&gt;
  (expended torque) as well as when it was used. The crew will select reference points to assist&lt;br /&gt;
  in maintaining ground track.&lt;br /&gt;
  &lt;br /&gt;
  c. Upon completion of the maneuver the P* will conduct post-task analysis of the takeoff.&lt;br /&gt;
  Causes of any differences in the actual ETL point and the prediction of that point will be&lt;br /&gt;
  determined. Discrepancies between predicted torque and expended torque will be analyzed&lt;br /&gt;
  for cause and the maneuver will be repeated as necessary to validate assumptions.&lt;br /&gt;
 &lt;br /&gt;
 '''Note:''' In having to correctly determine the ETL point, the P* is forced to accurately consider&lt;br /&gt;
 the effects of his control inputs, wind conditions, and surface considerations. Any under- or&lt;br /&gt;
 over-estimation of the point must be explained in the PTA following the takeoff maneuver.&lt;br /&gt;
 &lt;br /&gt;
 '''Note:''' The predicted torque determined for the maneuver would also be the hypothetical limit&lt;br /&gt;
 for establishing the takeoff escape plan. If it becomes apparent that the power selected for the&lt;br /&gt;
 maneuver is insufficient for obstacle clearance, the abort will be executed or additional power&lt;br /&gt;
 will be applied beyond predicted torque and noted by the P. In considering a nap of the earth&lt;br /&gt;
 (NOE) deceleration as part of the abort plan, the P* must consider the amount of power for&lt;br /&gt;
 the abort and the amount of airspeed at the time of the abort.&lt;br /&gt;
 &lt;br /&gt;
 2. Procedures.&lt;br /&gt;
  a. Level acceleration: This is a simulated maximum power situation where the power&lt;br /&gt;
  determined to be required (predicted torque) is the power required to hover in the LZ at a&lt;br /&gt;
  given altitude. The first objective is to achieve ETL without allowing the aircraft to settle to&lt;br /&gt;
  the surface. If it becomes apparent that the aircraft will contact the surface, apply sufficient&lt;br /&gt;
  aft cyclic to prevent contact or abort the maneuver and analyze for cause. As the transverse&lt;br /&gt;
  flow shudder develops, increase left and then forward cyclic. When the aircraft enters ETL,&lt;br /&gt;
  apply additional forward cyclic to prevent blowback. Maintain altitude and allow the aircraft&lt;br /&gt;
  to accelerate until the appropriate climb airspeed is attained. Best angle airspeed is&lt;br /&gt;
  approximately 30 to 35 knots indicated airspeed (KIAS). As the airspeed indicator will not be&lt;br /&gt;
  reliable, one bar width above the horizon on the vertical speed indicator (VSI) is used to&lt;br /&gt;
  approximate the speed. This attitude will provide the best angle of climb for the power&lt;br /&gt;
  applied. Best rate of climb is attempted when the predetermined best rate of climb airspeed is&lt;br /&gt;
  achieved on the indicator. When the desired speed is achieved, begin a cyclic climb until the&lt;br /&gt;
  obstacles are cleared and then adjust controls for a normal climb.&lt;br /&gt;
  &lt;br /&gt;
  b. Constant angle: In this maneuver, the angle may range from near vertical to flat. In this&lt;br /&gt;
  type of takeoff, more power than hover power is required. The angle is initiated from the&lt;br /&gt;
  point of hover or ground to a point in space. The goal is for the P* to accurately predict the&lt;br /&gt;
  power required for the angle selected as well as the ETL point on the angle, and the&lt;br /&gt;
  maintenance of the angle as precisely as possible. The P* initiates the takeoff by coordinating&lt;br /&gt;
  all the controls as necessary to begin a constant angle over a predetermined path. Expended&lt;br /&gt;
  torque is noted by the P as well as when it was used.&lt;br /&gt;
  &lt;br /&gt;
  c. Vertical: Vertical takeoffs can be classified as constant angles but are treated separately&lt;br /&gt;
  to emphasize two critical issues. First, when compared to lesser angles, vertical departures&lt;br /&gt;
  can often be executed with less power when wind is present. Power should be monitored&lt;br /&gt;
  during the climb to note the effects of the wind. Second, better escape options are available&lt;br /&gt;
  when the principle hazards to takeoff are related to high gross weight situations. In vertical&lt;br /&gt;
  departures, the entire LZ is available for recovery in the event of an aborted takeoff. The P*&lt;br /&gt;
  predicts the power and ETL entry point as in the other departures.&lt;br /&gt;
 &lt;br /&gt;
 '''Note:''' To maximize training value, all three types of takeoffs should be executed and&lt;br /&gt;
 compared for ETL entry points, power required, control input coordination, and timing as&lt;br /&gt;
 well as abort/escape options.&lt;br /&gt;
 &lt;br /&gt;
 '''NIGHT OR NIGHT VISION GOGGLE CONSIDERATIONS:'''&lt;br /&gt;
 1. If sufficient illumination exists to view obstacles, accomplish the takeoff in the same way as a&lt;br /&gt;
 visual meteorological conditions (VMC) takeoff during the day. Visual obstacles, such as&lt;br /&gt;
 shadows, should be treated the same as physical obstacles.&lt;br /&gt;
 &lt;br /&gt;
 2. If sufficient illumination or depth perception does not exist to adequately judge hover height&lt;br /&gt;
 or view obstacles, additional altitude should be used for level acceleration departures.&lt;br /&gt;
 &lt;br /&gt;
 3. When conducting operations during unaided night flight, ensure that the searchlight or&lt;br /&gt;
 landing light (white light) is in the desired position. Use of the white light will impair night vision&lt;br /&gt;
 several minutes. Therefore, exercise added caution if resuming flight before reaching full dark&lt;br /&gt;
 adaptation.&lt;br /&gt;
 &lt;br /&gt;
 '''TRAINING AND EVALUATION REQUIREMENTS:'''&lt;br /&gt;
 1. Training will be conducted in the aircraft.&lt;br /&gt;
 2. Evaluation will be conducted in the aircraft.&lt;br /&gt;
 &lt;br /&gt;
 '''Note:''' The standards for this maneuver have no ± figures assigned. The reason for this is to&lt;br /&gt;
 enhance power management skills and flying techniques. When evaluating this maneuver the&lt;br /&gt;
 SP/IP will determine, after the PTA is conducted, whether or not to perform additional&lt;br /&gt;
 maneuvers.&lt;br /&gt;
 &lt;br /&gt;
 '''REFERENCES:''' Appropriate common references.&lt;br /&gt;
             TC 1-211, appendix B&lt;/div&gt;</summary>
		<author><name>WikiSysop</name></author>	</entry>

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