A comparatlve study on the performance of pick-up and stationary baler for baling rice and wheat straw l [electronic resource].

By: Contributor(s): Language: English Summary language: Arabic Description: p.197 - 216Other title:
  • دراسة مقارنة اداء المكبس الثابت والمتحرك لتببيل قش الارز وتبن القمح [Added title page title]
Uniform titles:
  • Misr journal of agricultural engineering, 2011 v.28 (4), Special issue [electronic resource] Part 1:
Subject(s): Online resources: In: Misr Journal of Agricultural Engineering, 2011 v.28 (4), Special issue, 26-27 October, 2011 (part 1) 2011.v.280(4)SISummary: The peiformance of the pickup baler in terms of field capacity, field efficiency, bale density, baling losses, size requirements for storing bales, power, energy and cost was investigated as a function ofchange in baler fonvard speed, and material moisture content during baling rice straw,and wheat straw under the following conditions: Generally, by increasing the baler forward speed from (/.5 to 5.5 km/h) tends to increase the feed rate from (/.4 to 3.0 Mg/h), baler losses from (-10 to 60%), bale density from (82.0 to 89.0 kg/ m3 ), actual field capacity from (0.35 to 1. 22 fed/h) and power requiredfrom (65 to //.0 kW) during baling rice straw. The results also showed that by increasing the materials moisture content from (/1.0 to 24.0 %) tends to increasing thefeed rate from (1.4 to 2.5 Mg/h), baler losses from (4.0 to 7.0 %) and bale density from (82.0 to /00.0 kg/ m3 ) during baling rice straw.
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The peiformance of the pickup baler in terms of field capacity, field efficiency, bale density, baling losses, size requirements for storing bales, power, energy and cost was investigated as a function ofchange in baler fonvard speed, and material moisture content during baling rice straw,and wheat straw under the following conditions: Generally, by increasing the baler forward speed from (/.5 to 5.5 km/h) tends to increase the feed rate from (/.4 to 3.0 Mg/h), baler losses from (-10 to 60%), bale density from (82.0 to 89.0 kg/ m3 ), actual field capacity from (0.35 to 1. 22 fed/h) and power requiredfrom (65 to //.0 kW) during baling rice straw. The results also showed that by increasing the materials moisture content from (/1.0 to 24.0 %) tends to increasing thefeed rate from (1.4 to 2.5 Mg/h), baler losses from (4.0 to 7.0 %) and bale density from (82.0 to /00.0 kg/ m3 ) during baling rice straw.

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